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EPAS1 prevents telomeric damage-induced senescence by enhancing transcription of TRF1,TRF2,and RAD50
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作者 Kai-Qin Li Gao-Jing Liu +10 位作者 Xiu-Yun Liu Qiong-Fang Chen Xiao-Yan Huang Qiu Tu Jiao Zhang Qing Chang Yun-Hua Xie Rong Hua Dong-Ming Xu Zhen Liu Bo Zhao 《Zoological Research》 SCIE CAS CSCD 2023年第3期636-649,共14页
Telomeres are nucleoprotein structures located at the end of each chromosome,which function in terminal protection and genomic stability.Telomeric damage is closely related to replicative senescence in vitro and physi... Telomeres are nucleoprotein structures located at the end of each chromosome,which function in terminal protection and genomic stability.Telomeric damage is closely related to replicative senescence in vitro and physical aging in vivo.As relatively long-lived mammals based on body size,bats display unique telomeric patterns,including the upregulation of genes involved in alternative lengthening of telomeres(ALT),DNA repair,and DNA replication.At present,however,the relevant molecular mechanisms remain unclear.In this study,we performed cross-species comparison and identified EPAS1,a well-defined oxygen response gene,as a key telomeric protector in bat fibroblasts.Bat fibroblasts showed high expression of EPAS1,which enhanced the transcription of shelterin components TRF1 and TRF2,as well as DNA repair factor RAD50,conferring bat fibroblasts with resistance to senescence during long-term consecutive expansion.Based on a human single-cell transcriptome atlas,we found that EPAS1 was predominantly expressed in the human pulmonary endothelial cell subpopulation.Using in vitro-cultured human pulmonary endothelial cells,we confirmed the functional and mechanistic conservation of EPAS1 in telomeric protection between bats and humans.In addition,the EPAS1 agonist M1001 was shown to be a protective compound against bleomycin-induced pulmonary telomeric damage and senescence.In conclusion,we identified a potential mechanism for regulating telomere stability in human pulmonary diseases associated with aging,drawing insights from the longevity of bats. 展开更多
关键词 Bat TELOMERE SENESCENCE EPAS1 M1001 Pulmonary endothelial cell
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Telomeric associations of chromosomes in patients with esophageal squamous cell carcinomas 被引量:5
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作者 XIAO Lin 1, ZHOU Hong Yuan 1, LUO Zhong Cheng 2 and LIU Jun 1 《World Journal of Gastroenterology》 SCIE CAS CSCD 1998年第3期51-53,共3页
TelomericassociationsofchromosomesinpatientswithesophagealsquamouscelcarcinomasXIAOLin1,ZHOUHongYuan1,LUOZ... TelomericassociationsofchromosomesinpatientswithesophagealsquamouscelcarcinomasXIAOLin1,ZHOUHongYuan1,LUOZhongCheng2andLIU... 展开更多
关键词 ESOPHAGEAL neoplasms carcinomas SQUAMOUS CELL CHROMOSOME LYMPHOCYTES telomeric DNA
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Chromosome painting of telomeric repeats reveals new evidence for genome evolution in peanut 被引量:1
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作者 DU Pei LI Li-na +7 位作者 ZHANG Zhong-xin LIU Hua QIN Li HUANG Bing-yan DONG Wen-zhao TANG Feng-shou QI Zeng-jun ZHANG Xin-you 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2016年第11期2488-2496,共9页
Interspecific hybridization is an important approach to improve cultivated peanut varieties. Cytological markers such as tandem repeats will facilitate alien gene introgression in peanut. Telomeric repeats have also b... Interspecific hybridization is an important approach to improve cultivated peanut varieties. Cytological markers such as tandem repeats will facilitate alien gene introgression in peanut. Telomeric repeats have also been frequently used in chromosome research. Most plant telomeric repeats are(TTTAGGG)n that are mainly distributed at the chromosome ends, although interstitial telomeric repeats(ITRs) are also commonly identified. In this study, the telomeric repeat was chromosomally localized in 10 Arachis species through sequential GISH(genomic in situ hybridization) and FISH(fluorescence in situ hybridization) combined with 4',6-diamidino-2-phenylindole(DAPI) staining. Six ITRs were identified such as in the centromeric region of chromosome Bi5 in Arachis ipa?nsis, pericentromeric regions of chromosomes As5 in A. stenosperma, Bho7 in A. hoehnei and Av5 in A. villosa, nucleolar organizer regions of chromosomes As3 in A. stenosperma and Adi3 in A. diogoi, subtelomeric regions of chromosomes Bho9 in A. hoehnei and Adu7 in A. duranensis, and telomeric region of chromosome Es7 in A. stenophylla. The distributions of the telomeric repeat, 5S r DNA, 45 S r DNA and DAPI staining pattern provided not only ways of distinguishing different chromosomes, but also karyotypes with a higher resolution that could be used in evolutionary genome research. The distribution of telomeric repeats, 5S r DNA and 45 S r DNA sites in this study, along with inversions detected on the long arms of chromosomes Kb10 and Bho10, indicated frequent chromosomal rearrangements during evolution of Arachis species. 展开更多
关键词 Arachis species inversion interstitial telomeric repeats KARYOTYPE
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The restriction endonuclease Tru9I is a useful tool to analyze telomere sequences separately from interstitial telomeric sequences in <i>Arabidopsis thaliana</i>
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作者 María I. Vaquero-Sedas Miguel A. Vega-Palas 《American Journal of Molecular Biology》 2012年第3期242-244,共3页
We have previously described a simple method to analyze the chromatin structure of Arabidopsis telomeres independently of that of Interstitial Telomeric Sequences (ITSs). By using this method, we found that, whereas I... We have previously described a simple method to analyze the chromatin structure of Arabidopsis telomeres independently of that of Interstitial Telomeric Sequences (ITSs). By using this method, we found that, whereas ITSs are heterochromatic, Arabidopsis telomeres exhibit euchromatic features [1]. Some concerns have been recently raised about the accuracy of this procedure [2]. Here, we summarize these concerns and justify our experimental approaches and interpretation of results. 展开更多
关键词 Arabidopsis THALIANA TELOMERES ITSs EUCHROMATIN HETEROCHROMATIN
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Cancer Prohibitor-Telomeric DNA Repair Pathways
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作者 Ping Ping Jia Han Ping Shi 《Journal of Nutritional Oncology》 2018年第2期84-91,共8页
Telomeres are DNA-protein structures that form protective caps at the end of eukaryotic chromosomes,safeguarding the chromosomes from degradation and maintaining the genomic integrity.When DNA damage occurs,the cell w... Telomeres are DNA-protein structures that form protective caps at the end of eukaryotic chromosomes,safeguarding the chromosomes from degradation and maintaining the genomic integrity.When DNA damage occurs,the cell will activate its repair system to fix the errors to prevent cancer.There are three major molecular mechanisms of DNA repair:base excision repair(BER),nucleotide excision repair(NER),and mismatch repair(MMR).In this review article,we discuss the three canonical repair pathways at the telomeres and their functions in cancer prevention and therapy. 展开更多
关键词 TELOMERES Base EXCISION REPAIR NUCLEOTIDE EXCISION REPAIR MISMATCH REPAIR
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Detection of telomerase activity in human cells with telomeric repeat amplification protocol by silver staining 被引量:1
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作者 卫立辛 闫振林 +5 位作者 沈锋 谢天培 钱其军 崔贞福 郭亚军 吴孟超 《Journal of Medical Colleges of PLA(China)》 CAS 1998年第2期140-142,共3页
Telomerase is a ribonucleoprotein enzyme, which synthesizes telomeric repeats (TTAGGG) n.While germline cells and most malignant tumor cells express telomerase activity, normal somatic cells aregenerally deficient in ... Telomerase is a ribonucleoprotein enzyme, which synthesizes telomeric repeats (TTAGGG) n.While germline cells and most malignant tumor cells express telomerase activity, normal somatic cells aregenerally deficient in telomerase activity. Our objective was to detect telomerase activity of human cells bysilver staining with telorneric repeat amplification protocol (TRAP) which is easy and quick. Comparing withradioisotopic TRAP, we examined the telomerase activity in telomerase-positive 293-cell and RNase-pretreated and heat-pretreated negative controls by silver staining TRAP. We detected telomerase activity in 2 strainsof human liver tumor cells (QGY7701 and SMMC7721 ). The 293 cells (only 10 cells) and the 2 strains ofhuman liver tumor cells were all positive. while telomerase activity was not detected in the negative controls.These data suggest that non-radioisotopic silver staining TRAP is a specific, sensitive and fast assay fortelomerase activity. It was verified that the 2 strains of human liver tumor cells express telomerase activity. 展开更多
关键词 TELOMERE TELOMERASE SILVER STAINING
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A Study of Radiation-Induced Telomere Instability Using Multiplex Ligation-Dependent Probe Amplification (MLPA)
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作者 Alan Chant Ahmad Chaudary Christina M. Kraemer-Chant 《Advances in Biological Chemistry》 CAS 2024年第3期73-85,共13页
The integrity of the chromosomes for two WIL2-derived lymphoblastoid cell lines (TK6 and WTK1) in the presence and absence of ionizing radiation was analyzed by Multiplex Ligation-Dependent Probe Amplification (MLPA).... The integrity of the chromosomes for two WIL2-derived lymphoblastoid cell lines (TK6 and WTK1) in the presence and absence of ionizing radiation was analyzed by Multiplex Ligation-Dependent Probe Amplification (MLPA). The TK6 cell line has the native p53 tumor-suppressor gene, whereas WTK1 cells contain a p53 mutation. Each cell line was isolated pre- and post-irradiation (2 and 3 Gy) and analyzed by MLPA. The impact of irradiation on these two cell lines was investigated using probes that target specific regions on chromosomes associated with subtelomeric regions. Results indicate that WTK1 and TK6 are impacted differently after irradiation, and that each cell line presents its own unique MLPA profile. The most notable differences are the appearance of a number of probes in the post-irradiated MLPA profile that are not present in the controls, and two unique probe signals only seen in WTK1 cells. These results build on our previous studies that indicate how different human cell lines can be affected by radiation in significantly different ways depending on the presence or absence of wild type p53. 展开更多
关键词 Ionizing Radiation Multiplex Ligation-Dependent Probe Amplification (MLPA) p53 Tumor Suppressor Telomere Instability
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Direct Correlation among Telomere Length, Cellular Aging, and Rejuvenation Effects of Honey Child Powder
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作者 Naofumi Shiomi Keiko Watanabe +2 位作者 Yuki Fujiwara Takae Yamasaki Hideto Matsuyama 《Journal of Biosciences and Medicines》 2024年第7期55-70,共16页
Purpose: Telomere length (TL) is an indicator of age;however, hormonal influences complicate individual aging. It remains unclear whether TL shortening is a direct factor in both individual and cellular aging. Therefo... Purpose: Telomere length (TL) is an indicator of age;however, hormonal influences complicate individual aging. It remains unclear whether TL shortening is a direct factor in both individual and cellular aging. Therefore, we examined the direct relationship between TL and cellular senescence at the cellular level. Methods: Telomerase activity, TL, and gene expression were measured in cultured human lung-, fetal-, and skin-derived fibroblasts, human skin keratinocytes, and telomerase reverse transcriptase (TERT) gene-immortalized cells using detection kits, Cawthon’s method, and reverse transcription-quantitative polymerase chain reaction, respectively. Novel substances that elongate telomeres were screened to confirm cell rejuvenation effects. Results: Long-term cell culture of TIG-1-20 normal human fibroblasts resulted in TL shortening, decreased division rate, and senescence progression, whereas in OUMS-36T-2 cells, TL elongation via TERT gene transfer increased the division rate, reduced endoplasmic reticulum stress, and upregulated genes associated with young individuals, indicating that cellular rejuvenation occurs via TL elongation. In addition, a honey child powder (HCP) extract was found through screening, and the HCP extract strongly suppressed the menin gene, resulting in increased telomerase activity and extended cell lifespan. Upon addition of the HCP extract to skin fibroblasts, gene expression of moisturizing components, including collagen, hyaluronic acid, and elastin, increased, and exhibited a rejuvenating effect with an increase in elastin amount. Conclusions: TL elongation or shortening is involved in cell proliferation rate and cellular aging, and TL elongation rejuvenates cells. In addition, HCP extract has a rejuvenating effect on cells and is expected to be a rejuvenating compound. 展开更多
关键词 TELOMERE Cellular Aging Telomerase Reverse Transcriptase Gene REJUVENATION Honey Child Powder
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Analysis and location of a rice BAC clone containing telomeric DNA sequences
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作者 翟文学 陈浩 +3 位作者 颜辉煌 严长杰 王国梁 朱立煌 《Science China(Life Sciences)》 SCIE CAS 1999年第1期68-73,共6页
BAC2, a rice BAC clone containing (TTTAGGG)n homologous sequences, was analyzed by Southern hybridization and DNA sequencing of its subclones. It was disclosed that there were many tandem repeated satellite DNA sequen... BAC2, a rice BAC clone containing (TTTAGGG)n homologous sequences, was analyzed by Southern hybridization and DNA sequencing of its subclones. It was disclosed that there were many tandem repeated satellite DNA sequences, called TA352, as well as simple tandem repeats consisting of TTTAGGG or its variant within the BAC2 insert. A 0. 8 kb (TTTAGGG) n-containing fragment in BAC2 was mapped in the telomere regions of at least 5 pairs of rice chromosomes by using fluorescence in situ hybridization (FISH). By RFLP analysis of low copy sequences the BAC2 clone was localized in one terminal region of chromosome 6. All the results strongly suggest that the telomeric DNA sequences of rice are TTTAGGG or its variant, and the linked satellite DNA TA352 sequences belong to telomere-associated sequences. 展开更多
关键词 RICE BAC CLONE telomeric SEQUENCES telomere-associated sequences.
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NDI-induced Topological Conversion of Human Telomeric G-Quadruplexes from Hybrid-2 to Parallel Form
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作者 HAO Xueyu LI Chunjie +4 位作者 WANG Yu ZHANG Feng HOU Jingwei KANG Chunqing GAO Lianxun 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2021年第3期795-800,共6页
G-Quadruplexes(GQs),which are formed by G-rich DNA sequences in human telomeres,have become an attractive target for cancer treatment.The ligands to stabilize the conformation of human telomeric GQs in vivo are partic... G-Quadruplexes(GQs),which are formed by G-rich DNA sequences in human telomeres,have become an attractive target for cancer treatment.The ligands to stabilize the conformation of human telomeric GQs in vivo are particularly important for structure-based ligand design and drug development targeting the noncanonical DNA structure.Here we report the conformational conversion of Tel26 induced by a naphthalene diimide(NDI)ligand in K^(+)buffer,even at cellular physiological temperature(37℃)and under mimetic cellular crowding conditions created by Ficoll 70.We provide an insight into the dynamic conversion from initial hybrid-2 GQ topology to final parallel GQ topology.These results are helpful for the design of ligands with GQ conformation regulation. 展开更多
关键词 G-QUADRUPLEX Naphthalene diimide Topological conversion telomeric DNA
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Circular dichroism spectroscopic studies on structures formed by telomeric DNA sequences in vitro 被引量:1
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作者 ZHANG Xiaoyan CAO Enhua +1 位作者 SUN Xueguang BAI Chunli 《Chinese Science Bulletin》 SCIE EI CAS 2000年第21期1959-1963,共5页
Telomere plays an important role in cellular processes, such as cell aging, death and carcinogenisis. Having special sequences, it can form quadrupiex structure in vitro. Circular dichroism (CD) spectroscopic studies ... Telomere plays an important role in cellular processes, such as cell aging, death and carcinogenisis. Having special sequences, it can form quadrupiex structure in vitro. Circular dichroism (CD) spectroscopic studies show that TTAGGG, (TTAGGG)2 and (TTAGGG)4 can all form quadrupiex in vitro and exist mainly as parallel quadrupiex without metal ions. Both K+ and Na+ can stabilize the tetrameric structure and facilitate the forming of anti-parallel conformation. Furthermore, the conformations of quadrupiex can also be affected by sequence length, the nature and concentration of metal ions. 展开更多
关键词 human TELOMERE QUADRUPLEX CONFORMATION CD spectrum K+ Na+ CATION concentration.
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Single-molecule investigation of human telomeric G-quadruplex interactions with Thioflavin T 被引量:1
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作者 Honglian Cai Cuisong Zhou +5 位作者 Qiufang Yang Tingting Ai Yuqin Huang You Lv Jia Geng Dan Xiao 《Chinese Chemical Letters》 SCIE CAS CSCD 2018年第3期531-534,共4页
G-quadruplex ligands have been accepted as potential therapeutic agents for anticancer treatment. Thioflavin T (ThT), a highly selective G-quadruplex ligand, can bind G-quadruplex with a fluorescent light-up signal ... G-quadruplex ligands have been accepted as potential therapeutic agents for anticancer treatment. Thioflavin T (ThT), a highly selective G-quadruplex ligand, can bind G-quadruplex with a fluorescent light-up signal change and high specificity against DNA duplex. However, there are still different opinions that ThT induces/stabilizes G-quadruplex foldings/topologies in human telomere sequence. Here, a sensitive single-molecule nanopore technology was utilized to analyze the interactions between human telomeric DNA (Tel DNA) and ThT. Both translocation time and current blockade were measured to investigate the translocation behaviors. Furthermore, the effects of metal ion (K~ and Na~) and pH on the translocation behaviors were studied. Based on the single-molecule level analysis, there are some conclusions: (1) In the electrolyte solution containing 50 mmol/L I(Cl and 450 mmol/L NaCl, ThT can bind strongly with Tel DNA but nearly does not change the G-quadruplex form; (2) in the presence of high concentration K~, the ThT binding induces the structural change of hybrid G-quadruplex into antiparallel topology with an enhanced structural stability; (3) In either alkaline or acidic buffer, G-quadruplex form will change in certain degree. All above conclusions are helpful to deeply understand the interaction behaviors between Tel DNA and ThT. This nanopore platform, investigating G-quadruplex ligands at the single-molecule level, has great potential for the design of new drugs and sensors. 展开更多
关键词 α-Hemolysin nanopore Interaction Human telomere sequence Thioflavin T G-Quadruplex ligand
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How will telomeric complex be further contributed to our longevity?—The potential novel biomarkers of telomere complex counteracting both aging and cancer
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作者 Yiming Lu Bohua Wei +2 位作者 Tao Zhang Zi Chen Jing Ye 《Protein & Cell》 SCIE CSCD 2013年第8期573-581,共9页
With the smooth move towards the coming expected clinical reports of anticancer pharmaceutical molecules targeting telomeres and telomerase,and also with the exciting success in the extension of lifespan by regulating... With the smooth move towards the coming expected clinical reports of anticancer pharmaceutical molecules targeting telomeres and telomerase,and also with the exciting success in the extension of lifespan by regulating telomerase activity without increased onset of oncogenesis in laboratory mouse models(Garcia-Cao et al.,2006;Jaskelioff et al.,2011),we are convinced that targeting telomeres based on telomerase will be a potential approach to conquer both aging and cancer and the idea of longevity seems to be no more mysterious.More interestingly,emerging evidences from clinical research reveal that other telomeric factors,like specifi c telomeric binding proteins and nonspecific telomere associated proteins also show crucial importance in aging and oncogenesis.This stems from their roles in the stability of telomere structure and in the inhibition of DNA damage response at telomeres.Uncapping these proteins from chromosome ends leads to dramatic telomere loss and telomere dysfunction which is more abrupt than those induced by telomerase inactivation.Abnormal expression of these factors results in developmental failure,aging and even oncogenesis evidenced by several experimental models and clinical cases,indicating telomere specifi c proteins and its associated proteins have complimentary roles to telomerase in telomere protection and controlling cellular fate.Thus,these telomeric factors might be potential clinical biomarkers for early detection or even therapeutic targets of aging and cancer.Future studies to elucidate how these proteins function in telomere protection might benefit patients suffering aging or cancer who are not sensitive to telomerase mediation. 展开更多
关键词 TELOMERE TELOMERASE ONCOGENESIS SENESCENCE telomere binding protein
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Spectroscopic investigation on the telomeric DNA base sequence repeat
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作者 Sichuan Xu Xicheng Ai +2 位作者 Zhaoyong Sun Qiyuan Zhang Xingkang Zhang 《Chinese Science Bulletin》 SCIE EI CAS 2002年第2期108-111,共4页
Telomeres are protein-DNA complexes at the terminals of linear chromosomes, which protect chromoso-mal integrity and maintain cellular replicative capacity. From single-cell organisms to advanced animals and plants, s... Telomeres are protein-DNA complexes at the terminals of linear chromosomes, which protect chromoso-mal integrity and maintain cellular replicative capacity. From single-cell organisms to advanced animals and plants, structures and functions of telomeres are both very conser-vative. In cells of human and vertebral animals, telomeric DNA base sequences all are (TTAGGG)n. In the present work, we have obtained absorption and fluorescence spectra measured from seven synthesized oligonucleotides to simu-late the telomeric DNA system and calculated their relative fluorescence quantum yields on which not only telomeric DNA characteristics are predicted but also possibly the shortened telomeric sequences during cell division are im-plied. Oligonucleotide 5’- TTAGGGTTAGGG holds a low relative fluorescence quantum yield and remarkable excitation energy innerconversion, which tallies with the telomeric sequence of (TTAGGG)n. This result shows that telomeric DNA has a strong non-radiative or innerconvertible capabil- 展开更多
关键词 DNA TELOMERE OLIGONUCLEOTIDE FLUORESCENCE quantum yield.
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Telomeric impact of conventional chemotherapy
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作者 Yiming Lu Waiian Leong +2 位作者 Olivier Guérin Eric Gilson Jing Ye 《Frontiers of Medicine》 SCIE CSCD 2013年第4期411-417,共7页
The increased level of chromosome instability in cancer cells,leading to aneuploidy and gross chromosomal rearrangements,is not only a driving force for oncogenesis but also can be the Achille’s heel of the disease s... The increased level of chromosome instability in cancer cells,leading to aneuploidy and gross chromosomal rearrangements,is not only a driving force for oncogenesis but also can be the Achille’s heel of the disease since many chemotherapies(CT)kill cells by inducing a non-tolerable rate of DNA damage.A wealth of published evidence showed that telomere stability can be more affected than the bulk of the genome by several conventional antineoplasic drugs.These results raise the interesting possibility that CT with genotoxic drugs preferentially target telomeres.In agreement with this view,accelerated shortening of telomere length has been described in blood lineage cells following high-dose CT(stem cell transplantation)or non-myeloablative CT.However,almost nothing is known on the consequences of this shortening in terms of telomere stability,senescence and on the development of second cancers or post-treatment aging-like syndromes in cancer survivors(cognitive defect,fertility impairment,etc.).In this article,we propose:(1)telomeres of cancer cells are preferential genomic targets of chemotherapies altering chromosome maintenance;(2)telomere functional parameters can be a surrogate marker of chemotherapy sensitivity and toxicity;(3)the use of anti-telomere molecule could greatly enhance the sensitivity to standards chemotherapies. 展开更多
关键词 TELOMERE antineoplasic drugs conventional chemotherapies
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Identification of the New Type of G-Quadruplex with Multiple Vacant Sites in Human Telomeric DNA
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作者 Xiaonong Zhang Xiaolong Kou +1 位作者 Wei Zhang Wenke Zhang 《CCS Chemistry》 CAS 2022年第9期3023-3035,共13页
To date,few studies have reported on the folding mechanism of tandem G-quadruplexes in human telomeric DNA.Hence,the control of the biofunctions of G-quadruplex,which requires a thorough understanding of its dynamic b... To date,few studies have reported on the folding mechanism of tandem G-quadruplexes in human telomeric DNA.Hence,the control of the biofunctions of G-quadruplex,which requires a thorough understanding of its dynamic behavior,is limited.Here,we investigated the folding/unfolding behavior of human telomeric sequences with lengths over 10 kilonucleotide(knt)by circular dichroism(CD)spectroscopy,UV melting assay,and atomic force microscopy(AFM)-based single-molecule force spectroscopy. 展开更多
关键词 telomere G-quadruplex long telomere DNA single-molecule force spectroscopy vacant site folding mechanism
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ILF3 safeguards telomeres from aberrant homologous recombination as a telomeric R-loop reader
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作者 Chuanle Wang Yan Huang +7 位作者 Yue Yang Ruofei Li Yingying Li Hongxin Qiu Jiali Wu Guang Shi Wenbin Ma Zhou Songyang 《Protein & Cell》 SCIE 2024年第7期493-511,共19页
Telomeres are specialized structures at the ends of linear chromosomes that protect genome stability.The telomeric repeat-containing RNA(TERRA)that is transcribed from subtelomeric regions can invade into double-stran... Telomeres are specialized structures at the ends of linear chromosomes that protect genome stability.The telomeric repeat-containing RNA(TERRA)that is transcribed from subtelomeric regions can invade into double-stranded DNA regions and form RNA:DNA hybrid-containing structure called R-loop.In tumor cells,R-loop formation is closely linked to gene expression and the alternative lengthening of telomeres(ALT)pathway.Dysregulated R-loops can cause stalled replication forks and telomere instability.However,how R-loops are recognized and regulated,particularly at telomeres,is not well understood.We discovered that ILF3 selectively associates with telomeric R-loops and safeguards telomeres from abnormal homologous recombination.Knocking out ILF3 results in excessive R-loops at telomeres and triggers telomeric DNA damage responses.In addition,ILF3 deficiency disrupts telomere homeostasis and causes abnormalities in the ALT pathway.Using the proximity-dependent biotin identification(BioID)technology,we mapped the ILF3 interactome and discovered that ILF3 could interact with several DNA/RNA helicases,including DHX9.Importantly,ILF3 may aid in the resolution of telomeric R-loops through its interaction with DHX9.Our findings suggest that ILF3 may function as a reader of telomeric R-loops,helping to prevent abnormal homologous recombination and maintain telomere homeostasis. 展开更多
关键词 ILF3 RNA:DNA hybrids telomeric R-loops homologous recombination telomeric DNA damage responses
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Role of mitophagy in the hallmarks of aging 被引量:1
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作者 Jie Wen Tingyu Pan +4 位作者 Hongyan Li Haixia Fan Jinhua Liu Zhiyou Cai Bin Zhao 《The Journal of Biomedical Research》 CAS CSCD 2023年第1期1-14,共14页
Aging, subjected to scientific scrutiny, is extensively defined as a time-dependent decline in functions that involves the majority of organisms. The time-dependent accretion of cellular lesions is generally a univers... Aging, subjected to scientific scrutiny, is extensively defined as a time-dependent decline in functions that involves the majority of organisms. The time-dependent accretion of cellular lesions is generally a universal trigger of aging, while mitochondrial dysfunction is a sign of aging. Dysfunctional mitochondria are identified and removed by mitophagy, a selective form of macroautophagy. Increased mitochondrial damage resulting from reduced biogenesis and clearance may promote the aging process. The primary purpose of this paper is to illustrate in detail the effects of mitophagy on aging and emphasize the associations between mitophagy and other signs of aging, including dietary restriction, telomere shortening, epigenetic alterations, and protein imbalance.The evidence regarding the effects of these elements on aging is still limited. And although the understanding of relationship between mitophagy and aging has been long-awaited, to analyze details of such a relationship remains the main challenge in aging studies. 展开更多
关键词 MITOPHAGY AGING dietary restriction telomere shortening epigenetic alterations protein imbalance
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Association between Dietary Collagen Consumption and Telomere Length: National Health and Nutrition Examination Survey
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作者 Huifeng Jin Rolando L. Maddela Robert A. Sinnott 《Health》 2023年第10期1096-1115,共20页
Background: Bioactive peptides derived from hydrolyzed collagen have broad physiological functions and beneficial effects on human health, ranging from reducing skin aging to modifying lipid metabolism. Telomere lengt... Background: Bioactive peptides derived from hydrolyzed collagen have broad physiological functions and beneficial effects on human health, ranging from reducing skin aging to modifying lipid metabolism. Telomere length shortening is an established biomarker of cellular aging. It is not known if collagen consumption is associated with telomere length protection. Our purpose was to investigate the relationship between dietary collagen consumption and telomere length in a nationally representative US adult population. Methods: We analyzed the data of 6173 adults aged 20 - 84 from the National Health and Nutrition Examination Survey (NHANES) 1999-2002. Multivariable linear regression and a generalized additive model with smoothing plot were used to assess the association between the total collagen consumption and log-transformed leukocyte telomere length (LTL). Results: Compared with the lowest quartile of total collagen (Q1), we found that the second quartile of collagen (Q2) consumption (1.36 - 3.40 g/1000kcal) was positively associated with telomere length (β: 0.017;95% CI: 0.006, 0.028;P = 0.022) in the females while no association in the males (β: −0.003;95% CI: −0.019, 0.012;P = 0.678) and overall population (β: 0.008;95% CI: −0.002, 0.018;P = 0.141). The association in the females is nonlinear with an inflection point of 2.5 g/1000kcal (P for non-linearity: Conclusion: In conclusion, moderate dietary collagen has a positive and nonlinear association with telomere length in US females, while no significant associations were found in the males and the overall population. 展开更多
关键词 Telomere Length Dietary Collagen NHANES Linear Regression
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Hematopoietic stem cell transplantation of aplastic anemia by relative with mutations and normal telomere length: A case report
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作者 Jin Yan Ting Jin Li Wang 《World Journal of Clinical Cases》 SCIE 2023年第29期7200-7206,共7页
BACKGROUND Immunosuppressive therapy and matched sibling donor hematopoietic stem cell transplantation(MSD-HSCT)are the preferred treatments for aplastic anemia(AA).CASE SUMMARY In this report,we describe a 43-year-ol... BACKGROUND Immunosuppressive therapy and matched sibling donor hematopoietic stem cell transplantation(MSD-HSCT)are the preferred treatments for aplastic anemia(AA).CASE SUMMARY In this report,we describe a 43-year-old male patient with severe AA who carried BRIP1(also known as FANCJ),TINF2,and TCIRG1 mutations.Screening of the family pedigree revealed the same TINF2 mutation in his mother and older brother,with his older brother also carrying the BRIP1 variant and demonstrating normal telomere length and hematopoietic function.The patient was successfully treated with oral cyclosporine A,eltrombopag,and acetylcysteine,achieving remission 4 years after receiving MSD-HSCT from his older brother.CONCLUSION This case provides a valuable clinical reference for individuals with suspected pathogenic gene mutations,normal telomere length,and hematopoietic function,highlighting them as potential donors for patients with AA. 展开更多
关键词 Aplastic anemia Hematopoietic stem cell transplantation BRIP1 gene TINF2 gene Telomere length Case report
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