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The structure-directing role of heterologous seeds in the synthesis of zeolite 被引量:2
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作者 Haoyang Zhang Binyu Wang Wenfu Yan 《Green Energy & Environment》 SCIE EI CAS CSCD 2024年第5期792-801,共10页
Zeolites have been widely used as catalysts,ion-exchangers,and adsorbents in chemical industries,detergent industry,steel industry,glass industry,ceramic industry,medical and healthfield,and environmentalfield,and recen... Zeolites have been widely used as catalysts,ion-exchangers,and adsorbents in chemical industries,detergent industry,steel industry,glass industry,ceramic industry,medical and healthfield,and environmentalfield,and recently applied in energy storage.Seed-assisted synthesis is a very effective approach in promoting the crystallization of zeolites.In some cases,the target zeolite cannot be formed in the absence of seed zeolite.In homologous seed-assisted synthesis,the structure of the seed zeolite is the same to that of the target zeolite,while the structure of the seed zeolite is different to that of the target zeolite in the heterologous seed-assisted synthesis.In this review,we briefly summarized the heterologous seed-assisted syntheses of zeolites and analyzed the structure-directing effect of heterologous seeds and surveyed the“common composite building units(CBUs)hypothesis”and the“common secondary building units(SBUs)hypothesis”.However,both hypotheses cannot explain all observations on the heterologous seed-assisted syntheses.Finally,we proposed that the formation of the target zeolite does need nuclei with the structure of target zeolite and the formation of the nuclei of the target zeolite can be promoted by either the undissolved seed crystals with the same CBUs or SBUs to the target zeolite or by the facilitated appropriate distribution of the specific building units due to the presence of the heterologous seed that does not have any common CBUs and SBUs with the target zeolite. 展开更多
关键词 ZEOLITE heterologous seed SYNTHESIS Structure-directing effect
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A Case Report: High-Grade Urothelial Carcinoma in the Renal Pelvis with Complete Kidney and Ureter Duplication Featuring Heterologous Differentiation
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作者 Pan Wang Lina Li +1 位作者 Pei Zhang Yanan Wang 《Proceedings of Anticancer Research》 2023年第5期84-88,共5页
This report describes a considerably rare case of high-grade urothelial carcinoma of the renal pelvis and ureter,presenting with heterologous differentiation,in a patient with bilateral duplicated kidneys.A 73-year-ol... This report describes a considerably rare case of high-grade urothelial carcinoma of the renal pelvis and ureter,presenting with heterologous differentiation,in a patient with bilateral duplicated kidneys.A 73-year-old male experienced intermittent gross hematuria for 5 months,accompanied by lower back and abdominal pain.Ultrasound and computed tomography scans revealed bilateral renal and ureteral duplication with multiple tumors in the left renal pelvis.A total nephroterectomy and bladder cuff resection were performed on the left two nephrons.Multiple space-occupying lesions were identified in the left renal pelvis and ureter.Histopathological examination showed poorly differentiated and diverse tumor cells,manifesting as sarcomatoid carcinoma,papillary adenocarcinoma,and infiltrating high-grade urothelial carcinoma.The tumor infiltrated the subcutaneous fibrous connective tissue of the renal pelvis and the full thickness of the ureter.Given the rarity of recurrent renal urothelial carcinoma with heterogeneous differentiation,comprehensive imaging and pathological assessments are vital to delineate the nature of the lesion and the direction of tissue pathological heterologous differentiation.These evaluations guide early radical surgical interventions,improving survival rates. 展开更多
关键词 Duplicated renal malformation Renal pelvis High-grade urothelial carcinoma heterologous differentiation
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Engineering the Biosynthesis of Caffeic Acid in Saccharomyces cerevisiae with Heterologous Enzyme Combinations 被引量:9
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作者 Lanqing Liu Hong Liu +4 位作者 Wei Zhang Mingdong Yao Bingzhi Li Duo Liu Yingjin Yuan 《Engineering》 SCIE EI 2019年第2期287-295,共9页
Engineering the biosynthesis of plant-derived natural products in microbes presents several challenges, especially when the expression and activation of the plant cytochrome P450 enzyme is required. By recruiting two ... Engineering the biosynthesis of plant-derived natural products in microbes presents several challenges, especially when the expression and activation of the plant cytochrome P450 enzyme is required. By recruiting two enzymes—HpaB and HpaC—from several bacteria, we constructed functional 4- hydroxyphenylacetate 3-hydroxylase (4HPA3H) in Saccharomyces cerevisiae to take on a role similar to that of the plant-derived cytochrome P450 enzyme and produce caffeic acid. Along with a common tyrosine ammonia lyase (TAL), the different combinations of HpaB and HpaC presented varied capabilities in producing the target product, caffeic acid, from the substrate, L-tyrosine. The highest production of caffeic acid was obtained with the enzyme combination of HpaB from Pseudomonas aeruginosa and HpaC from Salmonella enterica, which yielded up to (289.4 ± 4.6) mg-L1 in shake-flask cultivation. The compatibility of heterologous enzymes within a yeast chassis was effectively improved, as the caffeic acid production was increased by 40 times from the initial yield. Six key amino acid residues around the flavin adenine dinucleotide (FAD) binding domain in HpaB from Pseudomonas aeruginosa were differentiate from those other HpaBs, and might play critical roles in affecting enzyme activity. We have thus established an effective approach to construct a highly efficient yeast system to synthesize non-native hydroxylated phenylpropanoids. 展开更多
关键词 SACCHAROMYCES CEREVISIAE Caffeic acid heterologous enzyme CYTOCHROME P450 Synthetic biology
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Heterologous Expression of Camellia sinensis Late Embryogenesis Abundant Protein Gene 1(CsLEA1)Confers Cold Stress Tolerance in Escherichia coli and Yeast 被引量:3
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作者 Tong Gao Yunxin Mo +3 位作者 Huiyu Huang Jinming Yu Yi Wang Weidong Wang 《Horticultural Plant Journal》 SCIE CSCD 2021年第1期89-96,共8页
Late embryogenesis abundant(LEA)proteins play an important role in plant growth and development,as well as in the plant response to various abiotic stresses.In this study,CsLEA1,a novel gene encoding a LEA_3 subfamily... Late embryogenesis abundant(LEA)proteins play an important role in plant growth and development,as well as in the plant response to various abiotic stresses.In this study,CsLEA1,a novel gene encoding a LEA_3 subfamily protein,was successfully cloned froma tea plant[Camellia sinensis(L.)O.Kuntze].Bioinformatics analysis and prokaryotic expression assays showed that CsLEA1 is a typical hydrophilic protein with a molecular weight of approximately 10.4 kD.Expression analyses revealed that the transcription of CsLEA1 in C.sinensis leaves was significantly induced by cold stress.In addition,the heterologous expression of CsLEA1 increased the tolerance of Escherichia coli and yeast to cold stress,which might be closely related to the low molecular weight and high hydrophilicity of the CsLEA1.Taken together,our results suggest that CsLEA1 might have an important function in the tolerance of C.sinensis to cold stress,thus providing a potential application in molecular breeding to enhance the cold stress tolerance of tea plants. 展开更多
关键词 tea plant CsLEA1 heterologous expression cold stress TOLERANCE
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Heterologous Expression of Rat Testis GABA_A Receptor β3t Splicing Variant in CHO Cells
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作者 Shi-feng LI Yu-guang CHEN +1 位作者 Yuan-chang YAN Yi-ping LI 《Journal of Reproduction and Contraception》 CAS 2004年第3期131-138,共8页
Objective To characterize a possible retention function of unique sequence in the 5'end of rat testis GABAA receptor β3t splicing variant Methods Rat testis GABAA receptor β3t splicing variant cDNA was cloned and t... Objective To characterize a possible retention function of unique sequence in the 5'end of rat testis GABAA receptor β3t splicing variant Methods Rat testis GABAA receptor β3t splicing variant cDNA was cloned and two eukaryotic expression recombinant plasmids of pEGFP-N1 and pEGFP-C1 were constructed respectively by fusing green fluorescent protein to the N or C-terminus of β3t isoform. The recombinant plasmids were transfected into CHO cells by calcium phosphate co-precipitation method Fluorescence microscope and laser confocal microscope were used to analyze localization of β3t in the transfected cells. ConA-Texas-Red was used to label cell ER and the localization of rat testis β3t splicing variant in CHO cells was determined. Results When rat testis β3t splicing variant was expressed in CHO cells, two expression patterns were delineated, the distributions of uniform and mainly discrete intracellular compartments respectively, The chimera product failed to be translocated into the cell surface when expressed in ClIO cells; whereas the β3 subunit of rat brain was incorporated into the plasma membrane. Conclusion The inability of β3t to target into the ER may be a consequence of the unique 25 specific amino acid segments in the N terminus. 展开更多
关键词 GABAA receptor β3t splicing variant heterologous expression CHO cell
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Mesh词表主题词扩展:移植,异种-Transplantation,heterologous
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《中国组织工程研究与临床康复》 CAS CSCD 2012年第2期376-376,共1页
关键词 主题词 叙词 检索词 Mesh Transplantation heterologous 异种 词表 词汇表
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Heterologous expression of bacteriocin E-760 in Chlamydomonas reinhardtii and functional analysis
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作者 Quezada-Rivera JJ RE Soria-Guerra +4 位作者 FS Pérez-Juárez L Martínez-González SE Valdés-Rodríguez NL Vasco-Méndez JF Morales-Domínguez 《Phyton-International Journal of Experimental Botany》 2019年第1期25-35,共11页
The use of antimicrobial peptides(AMPs)synthesized by bacteria(bacteriocins)is an alternative for combating multidrug resistant bacterial strains and their production by recombinant route is a viable option for their ... The use of antimicrobial peptides(AMPs)synthesized by bacteria(bacteriocins)is an alternative for combating multidrug resistant bacterial strains and their production by recombinant route is a viable option for their mass production.The bacteriocin E-760 isolated from the genus Enterococcus sp.has been shown to possess inhibitory activity against Gram-negative and Gram-positive bacteria.In this study,the expression of a chimeric protein coding for E-760 in the nucleus of C.reinhardtii was evaluated,as well as,its antibacterial activity.The synthetic gene E-760S was inserted into the genome of C.reinhardtii using Agrobacterium tumefaciens.A transgenic line was identified in TAP medium with hygromycin and also by PCR.The increment in the culture medium temperature of the transgenic strain at 35°C for 10 minutes,increased the production level of the recombinant protein from 0.14(Noninduced culture,NIC)to 0.36%(Induced culture,IC)of total soluble proteins(TSP);this was quantified by an ELISA assay.Recombinant E-760 possesses activity against Staphylococcus aureus in 0.34 U log,Streptococcus agalactiae in 0.48 U log,Enterococcus faecium in 0.36 U log,Pseudomonas aeruginosa in 2 U log and for Klebsiella pneumoniae,the activity was 0.07 U log.These results demonstrate that the nucleus transformation of C.reinhardtii can function as a stable expression platform for the production of the synthetic gene E-760 and it can potentially be used as an antibacterial agent. 展开更多
关键词 heterologous expression Antibacterial activity Bacteriocin E-760 Chlamydomonas reinhardtii Log inactivation Nuclear transformation
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Screening Testosterone Residue in the Edible Tissues of Bovine with a Polyclonal Antibody Based Heterologous Immunoassay
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作者 CHANG Xin Yao JIANG Jin Qing 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2013年第5期390-393,共4页
Testosterone(17β-hydroxyandrost-4-en-3-one)is a19-carbon steroid hormone with potent androgenic properties.It maintains testicular function and develop secondary male sex characteristics.It also has strong anabolic... Testosterone(17β-hydroxyandrost-4-en-3-one)is a19-carbon steroid hormone with potent androgenic properties.It maintains testicular function and develop secondary male sex characteristics.It also has strong anabolic effects,which initiates increased protein synthesis in muscle and bone[1].In the1950s,the recognition of the growth promoting properties of such a hormone 展开更多
关键词 Screening Testosterone Residue in the Edible Tissues of Bovine with a Polyclonal Antibody Based heterologous Immunoassay TES
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Plant as Bioreactor for Producing Heterologous Proteins
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作者 YANG Jing XIONG Li-dong +3 位作者 LI Tian-hang GUO Yong-xin LI Hai-yan LI Xiao-kun 《Chinese Journal of Biomedical Engineering(English Edition)》 2010年第4期156-173,共18页
Using plants to produce heterologous proteins makes it very attractive due to the potentially low costs. Using this procedure it is possible to produce medicinal protein for clinical applications with the plants biore... Using plants to produce heterologous proteins makes it very attractive due to the potentially low costs. Using this procedure it is possible to produce medicinal protein for clinical applications with the plants bioreactors increasing gradually. The paper proposes the five major systems of the plant bioreactor as well as their advantage and disadvantage and the development of each system. Focuses on the five major systems of the plant bioreactor to produce vaccines, antibodies and medical protein and the research achievement at the present stage and the research on my laboratory. The key technology research of plant bioreactor such as new genes, new biological components, new technologies and new research methods related with plant bioreactor offer a work foundation for a long-term development in future. 展开更多
关键词 生物反应器 planta 油身体 叶绿体 暂停系统 植物病毒 heterologous 蛋白质
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Evaluation of Carbon and Electron Flow in Lactobacillus brevis as a Potential Host for Heterologous 1-Butanol Biosynthesis
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作者 Oksana V.Berezina German Jurgens +3 位作者 Natalia V.Zakharova Rustem S.Shakulov Sergey V.Yarotsky Tom B.Granstrom 《Advances in Microbiology》 2013年第5期450-461,共12页
Heterofermentative lactic acid bacterium Lactobacillus brevis may be considered as a promising host for heterologous butanol synthesis because of tolerance to butanol and ability to ferment pentose and hexose sugars f... Heterofermentative lactic acid bacterium Lactobacillus brevis may be considered as a promising host for heterologous butanol synthesis because of tolerance to butanol and ability to ferment pentose and hexose sugars from wood hydrolysates that are cheap and renewable carbohydrate source. Carbon and electron flow was evaluated in two L. brevis strains in order to assess metabolic potential of these bacteria for heterologous butanol synthesis. Conditions required for generation of acetyl-CoA and NADH which are necessary for butanol biosynthesis have been determined. Key enzymes controlling direction of metabolic fluxes in L. brevis in various redox conditions were defined. In anaerobic glucose fermentation, the carbon flow through acetyl-CoA is regulated by aldehyde dehydrogenase ALDH possessing low affinity to NADH and activity (KmNADH= 200 μM, Vmax= 0.03 U/mg of total cell protein). Aerobically, the NADH-oxidase NOX (KmNADH= 25 μM, Vmax = 1.7 U/mg) efficiently competes with ALDH for NADH that results in formation of acetate instead of acetyl-CoA. In general, external electron acceptors (oxygen, fructose) and pentoses decrease NADH availability for native ethanol and recombinant butanol enzymes and therefore reduce carbon flux through acetyl-CoA. Pyruvate metabolism was studied in order to reveal redirection possibilities of competitive carbon fluxes towards butanol synthesis. The study provides a basis for the rational development of L. brevis strains producing butanol from wood hydrolysate. 展开更多
关键词 Lactobacillus brevis Metabolism Carbon and Electron Flow heterologous Butanol Synthesis SO2-Ethanol-Water Hydrolysate
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Process Control and Optimization for Heterologous Protein Production by Methylotrophic Pichia pastoris 被引量:10
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作者 GAO Minjie SHI Zhongping 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2013年第2期216-226,共11页
The methylotrophic yeast Pichia pastoris is a highly successful system for production of a variety of heterologous proteins due to its unique features/abilities for effective protein expression, and tremendous efforts... The methylotrophic yeast Pichia pastoris is a highly successful system for production of a variety of heterologous proteins due to its unique features/abilities for effective protein expression, and tremendous efforts have been made to increase heterologous protein productivity by P. pastoris in recent years. When new engineered yeast strains are constructed and are ready to use for industrial protein production, process control and optimization techniques should be applied to improve the fermentation performance in the following aspects: (1) increase recombinant cell concentrations in fermentor to high density during growth phase; (2) effectively induce heterologous proteins by enhancing/stabilizing titers or concentrations of the proteins during induction phase; (3) decrease operation costs by relieving the working loads of heat-exchange and oxygen supply. This article reviews and discusses the key and commonly used techniques in heterologous protein production by P. pastoris, with the focus on optimizations of fermentation media and basic operation conditions, development of optimal glycerol feeding strategies for achieving high density cultivation of P. pastoris and effective heterologous protein induction methods by regulating specific growth rate, methanol concentration, temperatures, mixture ratio of multi-carbon substrates, etc. Metabolic analysis for recombinant protein production by P. pastoris is also introduced to interpret the mechanism of sub-optimal heterologous protein production and to explore further optimal expression methods. 展开更多
关键词 生产过程控制 甲醇毕赤酵母 异源蛋白 优化技术 高密度发酵 细胞浓度 外源蛋白 重组蛋白
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Enhanced Riboflavin Production by Expressing Heterologous Riboflavin Operon from B.cereus ATCC14579 in Bacillus subtilis 被引量:4
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作者 段云霞 陈涛 +2 位作者 陈洵 王靖宇 赵学明 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2010年第1期129-136,共8页
Fragment containing the whole riboflavin(rib)operons of B.cereus ATCC14579 was detected from GenBank and annotated.The rib operon of ATCC14579 was cloned with Pn,its native promoter,or with P43,the vegetative growth p... Fragment containing the whole riboflavin(rib)operons of B.cereus ATCC14579 was detected from GenBank and annotated.The rib operon of ATCC14579 was cloned with Pn,its native promoter,or with P43,the vegetative growth promoter,into the plasmid.Expression analysis showed that heterologous rib operon was operative in B.subtilis.Integrative plasmid with P43-rib fragment was integrated into the chromosome of B.subtilis RH33,yielding transformant B.subtilis PY.With optimized medium components,4.3 g·L -1 of riboflavin was achieved in batch culture of B.subtilis PY,which was 27%enhancement compared to the host strain.Real-time reverse transcription polymerase chain reaction(RT-PCR)analysis indicated that the transcriptional level of ribA maintained 2.8-fold higher with the expression of herterologous rib operon.Furthermore,the stability of B.subtilis PY was increased form 45%to 87%.The high transcriptional level of rib gene and higher stability of B.subtilis PY could explain the increased riboflavin production. 展开更多
关键词 枯草芽孢杆菌 蜡样芽孢杆菌 操纵子 核黄素 强化生产 异源 逆转录聚合酶链反应 GENBANK
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Identification of missing CYP450 enzymes involved in paclitaxel biosynthesis and heterologous reconstitution of baccatin III
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作者 DU Jinfa LIAO Pan LU Xu 《Chinese Journal of Natural Medicines》 SCIE CAS CSCD 2024年第4期291-292,共2页
Paclitaxel,a tetracyclic diterpenoid,has garnered attention for its potent anti-cancer properties and intricate molecular structure,making it a significant target for chemical synthesis and biosynthesis[1].However,its... Paclitaxel,a tetracyclic diterpenoid,has garnered attention for its potent anti-cancer properties and intricate molecular structure,making it a significant target for chemical synthesis and biosynthesis[1].However,its natural sources are extremely limited,as it is derived exclusively from the bark of endangered genus Taxus plants,which contain paclitaxel in very low concentrations(0.01%−0.05%)[2-3].Recent advances in synthetic biology present promising opportunities to enhance paclitaxel levels in Taxus cell cultures or to enable the reconstitution of its production in heterologous hosts,such as yeast or tobacco(Nicotiana benthamiana). 展开更多
关键词 Paclitaxel biosynthesis Baccatin III Cytochrome P450 Taxane oxetanase 1 heterologous reconstitution
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Transfer of disulfide bond formation modules via yeast artificial chromosomes promotes the expression of heterologous proteins in Kluyveromyces marxianus
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作者 Pingping Wu Wenjuan Mo +6 位作者 Tian Tian Kunfeng Song Yilin Lyu Haiyan Ren Jungang Zhou Yao Yu Hong Lu 《mLife》 CSCD 2024年第1期129-142,共14页
Kluyveromyces marxianus is a food-safe yeast with great potential for producing heterologous proteins.Improving the yield in K.marxianus remains a challenge and incorporating large-scale functional modules poses a tec... Kluyveromyces marxianus is a food-safe yeast with great potential for producing heterologous proteins.Improving the yield in K.marxianus remains a challenge and incorporating large-scale functional modules poses a technical obstacle in engineering.To address these issues,linear and circular yeast artificial chromosomes of K.marxianus(KmYACs)were constructed and loaded with disulfide bond formation modules from Pichia pastoris or K.marxianus.These modules contained up to seven genes with a maximum size of 15 kb.KmYACs carried telomeres either from K.marxianus or Tetrahymena.KmYACs were transferred successfully into K.marxianus and stably propagated without affecting the normal growth of the host,regardless of the type of telomeres and configurations of KmYACs.KmYACs increased the overall expression levels of disulfide bond formation genes and significantly enhanced the yield of various heterologous proteins.In high-density fermentation,the use of KmYACs resulted in a glucoamylase yield of 16.8 g/l,the highest reported level to date in K.marxianus.Transcriptomic and metabolomic analysis of cells containing KmYACs suggested increased flavin adenine dinucleotide biosynthesis,enhanced flux entering the tricarboxylic acid cycle,and a preferred demand for lysine and arginine as features of cells overexpressing heterologous proteins.Consistently,supplementing lysine or arginine further improved the yield.Therefore,KmYAC provides a powerful platform for manipulating large modules with enormous potential for industrial applications and fundamental research.Transferring the disulfide bond formation module via YACs proves to be an efficient strategy for improving the yield of heterologous proteins,and this strategy may be applied to optimize other microbial cell factories. 展开更多
关键词 disulfide bond formation expression of heterologous proteins Kluyveromyces marxianus TELOMERE yeast artificial chromosome
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Rational Engineering of Secondary Metabolic Pathways in a Heterologous Host to Enable the Biosynthesis of Hibarimicin Derivatives with Enhanced Anti-Melanomic Activity
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作者 Xiangyang Liua Fei-Peng Zhao +9 位作者 Tian Tian Wei-Chen Wang Zaizhou Liu Qiang Zhou Xian-Feng Hou Jing Wang Wenli Guo Shuangjun Lin Yasuhiro Igarashi Gong-Li Tang 《Engineering》 SCIE EI CAS 2024年第7期113-123,共11页
A 61-kb biosynthetic gene cluster(BGC),which is accountable for the biosynthesis of hibarimicin(HBM)B from Microbispora rosea subsp.hibaria TP-A0121,was heterologously expressed in Streptomyces coelicolor M1154,which ... A 61-kb biosynthetic gene cluster(BGC),which is accountable for the biosynthesis of hibarimicin(HBM)B from Microbispora rosea subsp.hibaria TP-A0121,was heterologously expressed in Streptomyces coelicolor M1154,which generated a trace of the target products but accumulated a large amount of shunt products.Based on rational analysis of the relevant secondary metabolism,directed engineering of the biosynthetic pathways resulted in the high production of HBM B,as well as new HBM derivates with improved antitumor activity.These results not only establish a biosynthetic system to effectively synthesize HBMs-a class of the largest and most complex Type-Ⅱpolyketides,with a unique pseudo-dimeric structure-but also set the stage for further engineering and deep investigation of this complex biosynthetic pathway toward potent anticancer drugs. 展开更多
关键词 Hibarimicin Biosynthesis heterologous expression Biosynthetic gene cluster Rational engineering Type-II polyketide
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Lysohexaenetides A and B,linear lipopeptides from Lysobacter sp.DSM 3655 identified by heterologous expression in Streptomyces 被引量:2
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作者 XU Qiushuang ZOU Haochen +3 位作者 PAN Chen WANG Haoxin SHEN Yuemao LI Yaoyao 《Chinese Journal of Natural Medicines》 SCIE CAS CSCD 2023年第6期454-458,共5页
Lysobacter harbors a plethora of cryptic biosynthetic gene clusters(BGCs),albeit only a limited number have been analyzed to date.In this study,we described the activation of a cryptic polyketide synthase(PKS)/nonribo... Lysobacter harbors a plethora of cryptic biosynthetic gene clusters(BGCs),albeit only a limited number have been analyzed to date.In this study,we described the activation of a cryptic polyketide synthase(PKS)/nonribosomal peptide synthetase(NRPS)gene cluster(lsh)in Lysobacter sp.DSM 3655 through promoter engineering and heterologous expression in Streptomyces sp.S001.As a result of this methodology,we were able to isolate two novel linear lipopeptides,lysohexaenetides A(1)and B(2),from the recombinant strain S001-lsh.Furthermore,we proposed the biosynthetic pathway for lysohexaenetides and identified LshA as another example of entirely iterative bacterial PKSs.This study highlights the potential of heterologous expression systems in uncovering cryptic biosynthetic pathways in Lysobacter genomes,particularly in the absence of genetic manipulation tools. 展开更多
关键词 Natural products Lysobacter LIPOPEPTIDES heterologous expression
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A novel heterologous receptor-binding domain dodecamer universal mRNA vaccine against SARS-CoV-2 variants 被引量:1
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作者 Shugang Qin Hai Huang +13 位作者 Wen Xiao Kepan Chen Xi He Xiaoshan Tang Zhiying Huang Yupei Zhang Xing Duan Na Fan Qian Zheng Min Wu Guangwen Lu Yuquan Wei Xiawei Wei Xiangrong Song 《Acta Pharmaceutica Sinica B》 SCIE CAS CSCD 2023年第10期4291-4304,共14页
There are currently approximately 4000 mutations in the SARS-CoV-2 S protein gene and emerging SARS-CoV-2 variants continue to spread rapidly worldwide.Universal vaccines with high efficacy and safety urgently need to... There are currently approximately 4000 mutations in the SARS-CoV-2 S protein gene and emerging SARS-CoV-2 variants continue to spread rapidly worldwide.Universal vaccines with high efficacy and safety urgently need to be developed to prevent SARS-CoV-2 variants pandemic.Here,we described a novel self-assembling universal mRNA vaccine containing a heterologous receptorbinding domain(HRBD)-based dodecamer(HRBD^(dodecamer))against SARS-CoV-2 variants,including Alpha(B.1.1.7),Beta(B.1.351),Gamma(B.1.1.28.1),Delta(B.1.617.2)and Omicron(B.1.1.529).HRBD containing four heterologous RBD(Delta,Beta,Gamma,and Wild-type)can form a stable dodecameric conformation under T4 trimerization tag(Flodon,FD).The HRBD^(dodecamer)-encoding mRNA was then encapsulated into the newly-constructed LNPs consisting of a novel ionizable lipid(4N4T).The obtained universal mRNA vaccine(4N4T-HRBD^(dodecamer))presented higher efficiency in mRNA transfection and expression than the approved ALC-0315 LNPs,initiating potent immune protection against the immune escape of SARS-CoV-2 caused by evolutionary mutation.These findings demonstrated the first evidence that structure-based antigen design and mRNA delivery carrier optimization may facilitate the development of effective universal mRNA vaccines to tackle SARS-CoV-2 variants pandemic. 展开更多
关键词 SARS-CoV-2 variants pandemic Universal mRNA vaccines Antigen design heterologous RBD RBD dodecamer Lipid nanoparticles Ionizable lipids Immune escape
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Heterologous production of bioactive xenoacremone analogs in Aspergillus nidulans
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作者 LIU Zhiguo LI Wei +2 位作者 ZHANG Peng SUN Yi YIN Wen-Bing 《Chinese Journal of Natural Medicines》 SCIE CAS CSCD 2023年第6期436-442,共7页
Tyrosine-decahydrofluorene derivatives are a class of hybrid compounds that integrate the properties of polyketides and nonribosomal peptides.These compounds feature a[6.5.6]tricarbocyclic core and a para-cyclophane e... Tyrosine-decahydrofluorene derivatives are a class of hybrid compounds that integrate the properties of polyketides and nonribosomal peptides.These compounds feature a[6.5.6]tricarbocyclic core and a para-cyclophane ether moiety in their structures and exhibit anti-tumor and anti-microbial activities.In this study,we constructed the biosynthetic pathway of xenoacremones from Xenoacremonium sinensis ML-31 in the Aspergillus nidulans host,resulting in the identification of four novel tyrosine-decahydrofluorene analogs,xenoacremones I–L(1-4),along with two known analogs,xenoacremones A and B.Remarkably,compounds 3 and 4 contained a 12-membered para-cyclophane ring system,which is unprecedented among tyrosine-decahydrofluorene analogs in X.sinensis.The successful reconstruction of the biosynthetic pathway and the discovery of novel analogs demonstrate the utility of heterologous expression strategy for the generation of structurally diverse natural products with potential biological activities. 展开更多
关键词 heterologous expression Xenoacremones Tyrosine-decahydrofluorene PKS-NRPS Natural products
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Identification and heterologous expression of the globomycin biosynthetic gene cluster
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作者 Daniel Oves-Costales Tetiana Gren +8 位作者 Eva Baggesgaard Sterndorff Jesús Martín Francisco Javier Ortiz-Lopez Tue S.Jørgensen Xinglin Jiang Fernando Roman-Hurtado Fernando Reyes Olga Genilloud Tilmann Weber 《Synthetic and Systems Biotechnology》 SCIE CSCD 2023年第2期206-212,共7页
Globomycin is a cyclic lipodepsipeptide originally isolated from several Streptomyces species which displays strong and selective antibacterial activity against Gram-negative pathogens.Its mode of action is based on t... Globomycin is a cyclic lipodepsipeptide originally isolated from several Streptomyces species which displays strong and selective antibacterial activity against Gram-negative pathogens.Its mode of action is based on the competitive inhibition of the lipoprotein signal peptidase II(LspA),which is absent in eukaryotes and considered an attractive target for the development of new antibiotics.Despite its interesting biological properties,the gene cluster encoding its biosynthesis has not yet been identified.In this study we employed a genome-mining approach in the globomycin-producing Streptomyces sp.CA-278952 to identify a candidate gene cluster responsible for its biosynthesis.A null mutant was constructed using CRISPR base editing where production was abolished,strongly suggesting its involvement in the biosynthesis.The putative gene cluster was then cloned and heterologously expressed in Streptomyces albus J1074 and Streptomyces coelicolor M1146,therefore unambigu-ously linking globomycin and its biosynthetic gene cluster.Our work paves the way for the biosynthesis of new globomycin derivatives with improved pharmacological properties. 展开更多
关键词 Globomycin Signal peptidase II Cyclic lipodepsipeptide Genome mining CRISPR-cBEST heterologous expression
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Immunogenicity and reactogenicity of heterologous immunization schedules with COVID-19 vaccines:a systematic review and network meta-analysis
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作者 Pei Li Weiwei Wang +7 位作者 Yiming Tao Xiaoyu Tan Yujing Li Yinjun Mao Le Gao Lei Feng Siyan Zhan Feng Sun 《Chinese Medical Journal》 SCIE CAS CSCD 2023年第1期24-33,共10页
Background:Data on the immunogenicity and safety of heterologous immunization schedules are inconsistent.This study aimed to evaluate the immunogenicity and safety of homologous and heterologous immunization schedules... Background:Data on the immunogenicity and safety of heterologous immunization schedules are inconsistent.This study aimed to evaluate the immunogenicity and safety of homologous and heterologous immunization schedules.Methods:Multiple databases with relevant studies were searched with an end date of October 31,2021,and a website including a series of Coronavirus disease 2019 studies was examined for studies before March 31,2022.Randomized controlled trials(RCTs)that compared different heterologous and homologous regimens among adults that reported immunogenicity and safety outcomes were reviewed.Primary outcomes included neutralizing antibodies against the original strain and serious adverse events(SAEs).A network meta-analysis(NMA)was conducted using a random-effects model.Results:In all,11 RCTs were included in the systematic review,and nine were ultimately included in the NMA.Among participants who received two doses of CoronaVac,another dose of mRNA or a non-replicating viral vector vaccine resulted in a significantly higher level of neutralizing antibody than a third CoronaVac 600 sino unit(SU);a dose of BNT162b2 induced the highest geometric mean ratio(GMR)of 15.24,95%confidence interval[CI]:9.53–24.39.Following one dose of BNT162b2 vaccination,a dose of mRNA-1273 generated a significantly higher level of neutralizing antibody than BNT162b2 alone(GMR=1.32;95%CI:1.06–1.64),NVX-CoV2373(GMR=1.60;95%CI:1.16–2.21),or ChAdOx1(GMR=1.80;95%CI:1.25–2.59).Following one dose of ChAdOx1,a dose of mRNA-1273 was also more effective for improving antibody levels than ChAdOx1(GMR=11.09;95%CI:8.36–14.71)or NVX-CoV2373(GMR=2.87;95%CI:1.08–3.91).No significant difference in the risk for SAEs was found in any comparisons.Conclusions:Relative to vaccination with two doses of CoronaVac,a dose of BNT162b2 as a booster substantially enhances immunogenicity reactions and has a relatively acceptable risk for SAEs relative to other vaccines.For primary vaccination,schedules including mRNA vaccines induce a greater immune response.However,the comparatively higher risk for local and systemic adverse events introduced by mRNA vaccines should be noted.Registration:PROSPERO;https://www.crd.york.ac.uk/PROSPERO/;No.CRD42021278149. 展开更多
关键词 COVID-19 2019-nCoV vaccine mRNA-1273 BNT162 vaccine VACCINATION Immunization schedule Antibodies Neutralizing heterologous IMMUNOGENICITY Network meta-analysis
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