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F-box and leucine-rich repeat 6 promotes gastric cancer progression via the promotion of epithelial-mesenchymal transition
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作者 Lei Meng Yu-Ting Hu A-Man Xu 《World Journal of Gastrointestinal Oncology》 SCIE 2023年第3期490-503,共14页
BACKGROUND F-box and leucine-rich repeat 6(FBXL6)have reportedly been associated with several cancer types.However,the role and mechanisms of FBXL6 in gastric cancer(GC)require further elucidation.AIM To investigate t... BACKGROUND F-box and leucine-rich repeat 6(FBXL6)have reportedly been associated with several cancer types.However,the role and mechanisms of FBXL6 in gastric cancer(GC)require further elucidation.AIM To investigate the effect of FBXL6 in GC tissues and cells and the underlying mechanisms.METHODS TCGA and GEO database analysis was performed to evaluate the expression of FBXL6 in GC tissues and adjacent normal tissues.Reverse transcription-quantitative polymerase chain reaction,immunofluorescence,and western blotting were used to detect the expression of FBXL6 in GC tissue and cell lines.Cell clone formation,5-ethynyl-2’-deoxyuridine(EdU)assays,CCK-8,transwell migration assay,and wound healing assays were performed to evaluate the malignant biological behavior in GC cell lines after transfection with FBXL6-shRNA and the overexpression of FBXL6 plasmids.Furthermore,in vivo tumor assays were performed to prove whether FBXL6 promoted cell proliferation in vivo.RESULTS FBXL6 expression was upregulated more in tumor tissues than in adjacent normal tissues and positively associated with clinicopathological characteristics.The outcomes of CCK-8,clone formation,and Edu assays demonstrated that FBXL6 knockdown inhibited cell proliferation,whereas upregulation of FBXL6 promoted proliferation in GC cells.Additionally,the transwell migration assay revealed that FBXL6 knockdown suppressed migration and invasion,whereas the overex pression of FBXL6 showed the opposite results.Through the subcutaneous tumor implantation assay,it was evident that the knockdown of FBXL6 inhibited GC graft tumor growth in vivo.Western blotting showed that the effects of FBXL6 on the expression of the proteins associated with the epithelial-mesenchymal transition-associated proteins in GC cells.CONCLUSION Silencing of FBXL6 inactivated the EMT pathway to suppress GC malignancy in vitro.FBXL6 can potentially be used for the diagnosis and targeted therapy of patients with GC. 展开更多
关键词 Gastric cancer F-box and leucine-rich repeat 6 INVASION Epithelial-mesenchymal transition METASTASIS
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Role and mechanism of action of leucine-rich repeat kinase 1 in bone 被引量:2
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作者 Weirong Xing Helen Goodluck +1 位作者 Canjun Zeng Subburaman Mohan 《Bone Research》 SCIE CAS CSCD 2017年第1期14-26,共13页
Leucine-rich repeat kinase 1 (LRRK1) plays a critical role in regulating cytoskeletal organization, osteoclast activity, and bone resorption with little effect on bone formation parameters. Deficiency of Lrrkl in mi... Leucine-rich repeat kinase 1 (LRRK1) plays a critical role in regulating cytoskeletal organization, osteoclast activity, and bone resorption with little effect on bone formation parameters. Deficiency of Lrrkl in mice causes a severe osteopetrosis in the metaphysis of the long bones and vertebrae bones, which makes LRRK1 an attractive alternative drug target for the treatment of osteoporosis and other high-turnover bone diseases. This review recent advances on the functions of the Lrrkl-related family members, Lrrkl deficiency-induced skeletal phenotypes, LRRK1 structure-function, potential biological substrates and interacting proteins, and the mechanisms of LRRK1 action in osteoclasts. 展开更多
关键词 GENE Role and mechanism of action of leucine-rich repeat kinase 1 in bone
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Increased leucine-rich repeats and immunoglobulin- like domains 1 expression enhances chemosensitivity in glioma 被引量:1
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作者 Baohui Liu Qianxue Chen +12 位作者 Daofeng Tian Licluan Wu Junmin Wang Qiang Cai Heng Shen Baowei Ji Long Wang Shenqi Zhang Dong Ruan Xiaonan Zhu Zhentao Guo Huimin Dong Mingmin Yan 《Neural Regeneration Research》 SCIE CAS CSCD 2011年第32期2516-2520,共5页
Leucine-rich repeats and immunoglobulin-like domains 1 (LRIG1) is an anti-oncogene. LRIG1 is correlated with Bcl-2 in ependymomas. Decreased Bcl-2 and manganese superoxide dismutase expression can improve the chemos... Leucine-rich repeats and immunoglobulin-like domains 1 (LRIG1) is an anti-oncogene. LRIG1 is correlated with Bcl-2 in ependymomas. Decreased Bcl-2 and manganese superoxide dismutase expression can improve the chemosensitivity of glioma. In the present study, a tissue microarray of human brain astrocytomas was constructed. To investigate the relationship of LRIG1 with Bcl-2 and manganese superoxide dismutase, LRIG1, Bcl-2 and manganese superoxide dismutase expression in our tissue microarray was determined using immunohistochemistry. In addition, we constructed the LRIG1-U251 cell line, and its responses to doxorubicin and temozolomide were detected using the MTT assay. Results showed that LRIG1 expression was significantly negatively correlated with Bcl-2 and manganese superoxide dismutase expression in glioma. Also, proliferation of LRIG1-U251 cells exposed to doxorubicin or temozolomide was significantly inhibited, i.e. in the LRIG1-U251 cell line, the chemosensitivity to doxorubicin and temozolomide was increased. This indicates that increased LRIG1 expression produces a chemosensitivity in glioma. 展开更多
关键词 leucine-rich repeats and immunoglobulin-like domains 1 astrocytoma CHEMOSENSITIVITY
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Horizontal gene transfer of plant-specific leucine-rich repeats between plants and bacteria
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作者 Hiroki Miyashita Yoshio Kuroki +1 位作者 Robert H. Kretsinger Norio Matsushima 《Natural Science》 2013年第5期580-598,共19页
Leucine rich repeats (LRRs) are present in over 14,000 proteins that have been identified in viruses, bacteria, archaea, and eukaryotes. Two to sixty-two LRRs occur in tandem forming an overall arc shaped domain. Ther... Leucine rich repeats (LRRs) are present in over 14,000 proteins that have been identified in viruses, bacteria, archaea, and eukaryotes. Two to sixty-two LRRs occur in tandem forming an overall arc shaped domain. There are eight classes of LRRs. Plant specific LRRs (class: PS-LRR) had previously been recognized in only plant proteins. However, we find that PS-LRRs are also present in proteins from bacteria. We investigated the origin of bacterial PS-LRR domains. PSLRR proteins are widely distributed in most plants;they are found in only a few bacterial species. There are no PS-LRR proteins from archaea. Bacterial PS-LRRs in twenty proteins from eleven bacterial species (in the three phyla: Proteobacteria, Cyanobacteria, and Bacteroidetes) are significantly more similar to the PS-LRR class than to the other seven classes of LRR proteins. Not only amino acid sequences but also nucleotide sequences of the bacterial PS-LRR domains show highly significant similarity with those of many plant proteins. The program, EGID (Ensemble algorithm for Genomic Island Detection), predicts that Synechococcus sp. CYA_ 1022 came from another organism. Four bacterial PS-LRR proteins contain AhpC-TSA, IgA peptidase M64, the immunoglobulin domain, the Calx-b domain, and the He_PIG domain;these domains show no similarity with any eukaryotic (plant) proteins, in contrast to the similarities of their respective PS-LRRs. The present results indicate that horizontal gene transfer (HGT) of genes/gene fragments encoding PS-LRR domains occurred between bacteria and plants, and HGT among the eleven bacterial species, of the three phyla, as opposed to descent from a common ancestor. There is the possibility of the occurrence of one HGT event from plant to bacteria. A series of HGTs might then have occurred recently and rapidly among these eleven species of bacteria. 展开更多
关键词 leucine-rich repeat Plant-Specific lrr HORIZONTAL Gene Transfer BACTERIA
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Expression and sub-cellular localization of leucine-rich repeats and immunoglobulin-like domains are related to antioxidant enzymes in human ependymoma and oligodendroglioma
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作者 Wei Yi Lin Liu +2 位作者 Okechi Humphrey Qianxue Chen Shulan Huang 《Neural Regeneration Research》 SCIE CAS CSCD 2011年第11期860-864,共5页
The current study investigated correlations between the expression of leucine-rich repeats and immunoglobulin-like domain 1 (LRIG1) and antioxidant enzymes and related proteins, including manganese superoxide dismut... The current study investigated correlations between the expression of leucine-rich repeats and immunoglobulin-like domain 1 (LRIG1) and antioxidant enzymes and related proteins, including manganese superoxide dismutase, glutamate cysteine ligase catalytic or regulatory subunit, thioredoxin and thioredoxin reductase, in both human ependymoma and oligodendroglioma. Results revealed that the cytoplasmic expression of LRIG1 was associated with expression of glutamate cysteine ligase catalytic subunit in the human ependymoma, while the nuclear expression of LRIG1 was associated with expression of thioredoxin reductase. In human oligodendroglioma, the cytoplasmic expression of LRIG1 was associated with expression of the glutamate cysteine ligase catalytic subunit. Both the nuclear and perinuclear expressions of LRIG1 were associated with expression of glutamate cysteine ligase regulatory subunit. These results indicated that several antioxidant enzymes and related proteins contributed to LRIG1 expression, and that these may participate in the antioxidation of the cells. 展开更多
关键词 leucine-rich repeats and immunoglobulin-like domain 1 sub-cellular localization EPENDYMOMA OLIGODENDROGLIOMA antioxidant enzymes
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脑组织特异性基因/脑胶质瘤抑瘤基因LRRC4的功能研究进展 被引量:4
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作者 武明花 李小玲 李桂源 《生物化学与生物物理进展》 SCIE CAS CSCD 北大核心 2007年第12期1234-1239,共6页
LRRC4是一个脑组织相对特异性表达基因,是采用表达序列标签(EST)介导的定位-候选克隆策略结合5′-RACE技术从染色体7q31~32区域克隆出来的一个富亮氨酸重复(LRR)超家族的新成员.LRRC4是神经系统发育与轴突生长的功能基因.LRRC4的表达... LRRC4是一个脑组织相对特异性表达基因,是采用表达序列标签(EST)介导的定位-候选克隆策略结合5′-RACE技术从染色体7q31~32区域克隆出来的一个富亮氨酸重复(LRR)超家族的新成员.LRRC4是神经系统发育与轴突生长的功能基因.LRRC4的表达与胶质瘤的级别进展呈负相关,其表达缺失参与脑胶质瘤进展的晚期事件.LRRC4能够下调一系列神经生长因子或受体(如IGF,EGF,PDGF,CNTF,bFGF,GDNF和BDNF等)的表达,通过调控多种信号转导通路(K-Ras/c-Raf/ERK/MAPK,PI-3K/AKT/NF-κB,p70S6/PKC,STAT3以及JNK2/c-Jun/mp53等)将U251细胞阻滞在G1晚期,抑制脑胶质瘤细胞的增殖和侵袭,而且这种抑制作用依赖于它的LRR结构域.LRRC4不能诱导胶质瘤细胞的凋亡,而是诱导胶质瘤细胞向胶质样细胞分化. 展开更多
关键词 lrrC4 富亮氨酸重复超家族 脑胶质瘤 信号转导
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桑树NBS-LRR类基因家族的全基因组鉴定及其调控microRNAs分析 被引量:4
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作者 刘潮 褚洪龙 +3 位作者 韩利红 杨云锦 高永 唐利洲 《江苏农业学报》 CSCD 北大核心 2019年第3期544-553,共10页
利用生物信息学方法,全面分析了桑树NBS-LRR类基因家族组成、结构、进化、组织表达,并对该家族基因的调控microRNA(miRNA)进行了预测。共筛选到112个桑树NBS-LRR类基因,根据功能域主要分为NBS、CC-NBS、CC-NBS-LRR、NBS-LRR 4种类型。... 利用生物信息学方法,全面分析了桑树NBS-LRR类基因家族组成、结构、进化、组织表达,并对该家族基因的调控microRNA(miRNA)进行了预测。共筛选到112个桑树NBS-LRR类基因,根据功能域主要分为NBS、CC-NBS、CC-NBS-LRR、NBS-LRR 4种类型。内含子数和相位分析结果显示,基因结构类型多样。聚类分析结果显示不同聚类组间存在较多的类型交叉现象。该家族基因存在组织表达特异性。大部分桑树NBS-LRR类基因均具有被miRNAs调控的可能性,miR472b和miR482b在调控该家族基因表达中可能发挥了主要作用。桑树NBS-LRR家族基因结构和进化的复杂性决定了其功能的多样性,miRNA在控制该家族基因表达的适应性成本中发挥作用。 展开更多
关键词 桑树 NBS-lrr 生物信息学 MIRNA
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抗禾谷孢囊线虫基因中核苷酸结合位点区(NBS)-亮氨酸重复序列区(LRR)的克隆与序列分析 被引量:1
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作者 刘毅 翟旭光 +3 位作者 吴芳 邓光兵 潘志芬 余懋群 《应用与环境生物学报》 CAS CSCD 北大核心 2006年第6期745-749,共5页
根据源于节节麦抗禾谷孢囊线虫基因Cre3及已经克隆的NBS-LRR类植物抗病基因的NBS与LRR区保守序列分别设计特异引物,从易变山羊草基因组中PCR扩增得到两个扩增条带,它们的大小分别约为530bp和1200bp.经克隆测序发现,这两个序列分别长为53... 根据源于节节麦抗禾谷孢囊线虫基因Cre3及已经克隆的NBS-LRR类植物抗病基因的NBS与LRR区保守序列分别设计特异引物,从易变山羊草基因组中PCR扩增得到两个扩增条带,它们的大小分别约为530bp和1200bp.经克隆测序发现,这两个序列分别长为532bp和1175bp,且是连续的.它们有32bp的共同序列,总长为1675bp,包含了一个NBS-LRR区和一个不完整的开放阅读框,没有起始密码子、终止密码子和内含子结构.它编码一个557个氨基酸的蛋白质,分子量(Mr)为63.537×103,含有NBS区保守模体ILDD,ESKILVTTRSK,KGSPLAARTVGG,RRC-FAYCS,EGF,以及LRR区的保守模体aXXLXXLXXL.它与Cre3的核苷酸和氨基酸同源性分别为87.8%和77%,可能是一个抗禾谷孢囊线虫基因. 展开更多
关键词 易变山羊草 抗禾谷孢囊线虫基因 核苷酸结合位点区-亮氨酸重复序列区 克隆和序列分析
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拟南芥LRR-RLK家族蛋白CLV1胞外域的可溶性表达与纯化
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作者 李锋 严孝金 +3 位作者 韩翠晓 冯舵 李倩倩 高伟 《湖北农业科学》 北大核心 2011年第11期2259-2263,共5页
大肠杆菌NusA蛋白与拟南芥LRR-RLK家族蛋白CLAVATA1(CLV1)胞外结构域(Ectodomain,ECD)融合表达,实现了蛋白CLV1-ECD的可溶性表达;CLV1-ECD与其配体蛋白CLAVATA3(CLV3)共表达,可以明显提高它的水溶性。该实验方法快速简易地获得了大量纯... 大肠杆菌NusA蛋白与拟南芥LRR-RLK家族蛋白CLAVATA1(CLV1)胞外结构域(Ectodomain,ECD)融合表达,实现了蛋白CLV1-ECD的可溶性表达;CLV1-ECD与其配体蛋白CLAVATA3(CLV3)共表达,可以明显提高它的水溶性。该实验方法快速简易地获得了大量纯化的CLV1-ECD蛋白,避免了包涵体变性与复性的复杂过程,为植物CLAVATA信号系统的进一步研究奠定了基础。 展开更多
关键词 亮氨酸重复序列 CLAVATA1(CLV1) 可溶性表达 胞外结构域 共表达
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辣椒NBS-LRR类型抗病基因同源序列的克隆及分析 被引量:5
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作者 赵敬 万红建 +1 位作者 杨悦俭 侯喜林 《江苏农业学报》 CSCD 北大核心 2012年第3期611-616,共6页
为研究辣椒NBS-LRR类抗病基因的结构和功能特点,运用前人根据NBS-LRR类抗病基因保守结构域(P-Loop和GLPL)设计的简并引物,以辣椒PBC631B的基因组DNA为模板进行PCR扩增,共获得17个具有完整开放阅读框的辣椒抗病基因同源序列(CaRGA01~CaR... 为研究辣椒NBS-LRR类抗病基因的结构和功能特点,运用前人根据NBS-LRR类抗病基因保守结构域(P-Loop和GLPL)设计的简并引物,以辣椒PBC631B的基因组DNA为模板进行PCR扩增,共获得17个具有完整开放阅读框的辣椒抗病基因同源序列(CaRGA01~CaRGA17)。多重序列比对显示这些序列都含有NBS-LRR类基因的6个保守结构域(P-loop、RNBS-A-nonTIR或RNBS-A-TIR、Kinase-2、RNBS-B、RNBS-C和GLPL)。与已知6个抗病基因(Gpa2、L6、M、N、Prf和RPM1)构建系统进化树,发现这17个序列被分为TIR-NBS-LRR和nonTIR-NBS-LRR2组,进一步划分为4个亚组(CaRGAⅠ~CaRGAⅣ)。其中,CaRGA01和CaRGA13分别与来自番茄Solanum lycop-ersicum抗细菌性斑点病基因Bs4和番茄Solanum sp.VFNT抗线虫基因Mi-1.4相似性最高,分别为90%和91%,推测这2个序列可能是相关抗病基因的一部分或与相关抗病基因属于同一家族。这些结果将为研究辣椒抗病相关基因提供理论依据。 展开更多
关键词 NBS-lrr 抗病基因同源序列 辣椒 克隆
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菠菜NBS-LRR类抗病基因同源序列的克隆及分析 被引量:3
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作者 折红兵 范桂彦 +4 位作者 张合龙 王晓武 武剑 钱伟 徐兆生 《中国蔬菜》 北大核心 2017年第5期26-33,共8页
依据已知NBS-LRR类抗病基因的P-loop和GLPL两个保守结构域设计简并引物,对抗菠菜霜霉病商业杂交种RZ51-147、自交系12S3和12S4的基因组DNA进行PCR扩增、克隆和序列测定,共获得23条具有完整开放阅读框且含有NBS结构的抗病基因同源序列(re... 依据已知NBS-LRR类抗病基因的P-loop和GLPL两个保守结构域设计简并引物,对抗菠菜霜霉病商业杂交种RZ51-147、自交系12S3和12S4的基因组DNA进行PCR扩增、克隆和序列测定,共获得23条具有完整开放阅读框且含有NBS结构的抗病基因同源序列(resistancegeneanalogs,RGAs),编号为SP1~SP17、SP19~SP24,其在NCBI中的登录号为KX914865~KX914887。核苷酸比较分析结果表明,这23条RGAs大多与甜菜中推测的一些抗病蛋白基因或其他相关蛋白基因具有较高的同源性,其中SP1、SP2、SP5、SP6、SP10、SP11、SP12、SP13等8条序列均与甜菜RF45类抗病蛋白有着86%以上的同源性;SP3、SP4、SP8、SP9、SP24等5条序列与甜菜RPP13类抗病蛋白的同源性在85%以上,与向日葵抗霜霉病基因PI8相应区域的氨基酸序列相似性为32.20%~33.52%,且在进化树上聚为一类,推测其可能与抗霜霉病相关。同源进化分析结果表明,除SP7外,其余序列均为non-TIR-NBS-LRR类抗病基因,并与推导的氨基酸序列多重比较结果一致。 展开更多
关键词 菠菜 抗病基因同源序列 NBS-lrr 菠菜霜霉病
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电子克隆获取甜菜富亮氨酸类受体蛋白激酶基因BvLRR-RPK2;1完整编码区 被引量:2
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作者 王希 陈丽 赵春雷 《中国糖料》 2019年第3期12-18,共7页
针对前期获得的甜菜分子标记位点进行分析,以获得甜菜中该位点相关的基因。结合电子克隆与常规克隆,获取并验证目的基因片段,最后预测基因产物结构与功能。结果获得了一段长3467bp的片段,其中包含一个长3141bp的完整编码区,编码一个长10... 针对前期获得的甜菜分子标记位点进行分析,以获得甜菜中该位点相关的基因。结合电子克隆与常规克隆,获取并验证目的基因片段,最后预测基因产物结构与功能。结果获得了一段长3467bp的片段,其中包含一个长3141bp的完整编码区,编码一个长1046aa的富亮氨酸类受体蛋白激酶。将基因命名为BvLRR-RPK2;1。基因编码区在基因组中连续存在,无内含子区域。基因翻译产物BvLRR-RPK2;1具有一个跨膜结构域,具有LRR-RPK家族的特征性结构域,与已知的LRR-RPK/RLK类蛋白序列相似性在85%以下,与甜菜本身的预测序列在编码区内部有5个碱基、2个氨基酸的差异。本文获得了一个甜菜中未经克隆的LRR-RPK2编码区,并预测了其产物功能。 展开更多
关键词 甜菜 富亮氨酸类受体蛋白激酶(lrr-RPK) 基因克隆 电子克隆 完整编码区
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Cloning and Characterization of Full Length cDNA of a CC-NBS-LRR Resistance Gene in Sweetpotato 被引量:2
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作者 CHEN Guan-shui ZHOU Yi-fei +1 位作者 HOU Li-li PAN Da-ren 《Agricultural Sciences in China》 CAS CSCD 2009年第5期538-545,共8页
Conserved domain such as nucleotide binding site (NBS) was found in several cloned plant disease resistance genes. Based on the NBS domain, resistance gene analogues (RGAs) have been isolated. A full-length cDNA, ... Conserved domain such as nucleotide binding site (NBS) was found in several cloned plant disease resistance genes. Based on the NBS domain, resistance gene analogues (RGAs) have been isolated. A full-length cDNA, SPR1 was obtained by rapid amplification of cDNA ends (RACE) method. Sequence analysis indicated that the length of SPR1 was 3 066 bp, including a complete open reading frame of 2 667 bp encoding SPR1 protein of 888 amino acids. Compared with known NBS-LRR genes, it presented relatively high amino acid sequence identity. The polypeptide has a typical structure of nonT1R-NBS-LRR genes, with NB-ARC, CC, and LRR domains. The SPR1-related sequences belonged to multicopy gene family in sweetpotato genome according to the result of Southern blotting. Semi-quantitative RT-PCR analysis showed SPR1 expressed in all tested tissues. The cloning of putative resistance gene from sweetpotato provides a basis for studying the structure and function of sweetpotato disease-resistance relating genes and disease resistant genetic breeding in sweetpotato. The gene has been submitted to the GenBank database, and the accession number is EF428453. 展开更多
关键词 SWEETPOTATO NBS (nucleotide binding site) lrr leucine-rich repeat R gene (resistance gene)
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长牡蛎新型模式识别受体CgLRRC69的克隆和功能鉴定
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作者 张翔宇 宋菁晨 +5 位作者 刘坤娜 毛帆 肖述 向志明 张扬 喻子牛 《热带海洋学报》 CAS CSCD 北大核心 2021年第1期65-74,共10页
在双壳类软体动物中,血淋巴细胞介导的吞噬作用是清除入侵微生物的主要方式。本文在长牡蛎中鉴定了一个包含富含亮氨酸重复序列(Leucine-rich repeat, LRR)结构域的新型基因,命名为CgLRRC69。对该基因的组织分布分析表明, CgLRRC69 mRN... 在双壳类软体动物中,血淋巴细胞介导的吞噬作用是清除入侵微生物的主要方式。本文在长牡蛎中鉴定了一个包含富含亮氨酸重复序列(Leucine-rich repeat, LRR)结构域的新型基因,命名为CgLRRC69。对该基因的组织分布分析表明, CgLRRC69 mRNA在血淋巴细胞、鳃、肌肉、外套膜、心脏、消化腺和性腺中广泛表达。副溶血弧菌感染可以显著地刺激CgLRRC69在血淋巴细胞中表达,并且在感染后6h达到峰值。同时,酶联免疫吸附实验发现CgLRRC69可以特异性结合脂多糖(lipopolysaccharide,LPS),表明它可能在免疫防御中有功能。吞噬实验结果显示,CgLRRC69重组蛋白可以显著地提高血淋巴细胞的吞噬能力;RNAi干扰CgLRRC69在牡蛎体内的表达,显著降低了血淋巴细胞对细菌的清除能力。因此,这些结果揭示了CgLRRC69作为一种新型模式识别受体,可以特异性识别革兰氏阴性菌的主要成分LPS,通过调理作用有效地清除细菌。 展开更多
关键词 长牡蛎 lrr富含亮氨酸重复序列 模式识别 吞噬作用 免疫防御
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LRRK2G2019S Mutation Inhibits Degradation of α-Synuclein in an In Vitro Model of Parkinson's Disease
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作者 Dan HU Jian-yi NIU +3 位作者 Jing XIONG Shu-ke NIE Fei ZENG Zhao-hui ZHANG 《Current Medical Science》 SCIE CAS 2018年第6期1012-1017,共6页
The G2019S mutation of the leucine-rich repeat kinase 2(LRRK2)is the most common genetic cause of Parkinson's disease (PD).However,the molecular mechanisms of LRRK2 mutation contributing to the onset and progressi... The G2019S mutation of the leucine-rich repeat kinase 2(LRRK2)is the most common genetic cause of Parkinson's disease (PD).However,the molecular mechanisms of LRRK2 mutation contributing to the onset and progression of PD have not been fully illustrated.We generated HEK293 cells stably transfected with α-synuclein and investigated the effect of LRRK2 G2019S mutation on the degradation of α-synuclein.The lysosomal activity was assessed by the protein degradation of glyceraldehyde-3-phosphate dehydrogenase and ribonuclease A.It was found that α-synuclein was mainly degraded in lysosomes.LRRK2G2019S inhibited the degradation of α-synuclein,and promoted its aggregation.LRRK2G 2019S also decreased the activities of lysosomal enzymes including cathepsin B and cathepsin L.Furthermore,the inhibitory effect of LRRK2 G2019S on lysosomal functions did not depend on its kinase activity.These findings indicated that the inhibitory effect of LRRK2 G2019S on α-synuclein degradation could underlie the pathogenesis of aberrant α-synuclein aggregation in PD with LRRK2 mutation. 展开更多
关键词 Α-SYNUCLEIN leucine-rich repeat KINASE 2 Parkinson's disease LYSOSOME
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Axonal growth inhibitors and their receptors in spinal cord injury:from biology to clinical translation 被引量:2
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作者 Sílvia Sousa Chambel Célia Duarte Cruz 《Neural Regeneration Research》 SCIE CAS CSCD 2023年第12期2573-2581,共9页
Axonal growth inhibitors are released during traumatic injuries to the adult mammalian central nervous system, including after spinal cord injury. These molecules accumulate at the injury site and form a highly inhibi... Axonal growth inhibitors are released during traumatic injuries to the adult mammalian central nervous system, including after spinal cord injury. These molecules accumulate at the injury site and form a highly inhibitory environment for axonal regeneration. Among these inhibitory molecules, myelinassociated inhibitors, including neurite outgrowth inhibitor A, oligodendrocyte myelin glycoprotein, myelin-associated glycoprotein, chondroitin sulfate proteoglycans and repulsive guidance molecule A are of particular importance. Due to their inhibitory nature, they represent exciting molecular targets to study axonal inhibition and regeneration after central injuries. These molecules are mainly produced by neurons, oligodendrocytes, and astrocytes within the scar and in its immediate vicinity. They exert their effects by binding to specific receptors, localized in the membranes of neurons. Receptors for these inhibitory cues include Nogo receptor 1, leucine-rich repeat, and Ig domain containing 1 and p75 neurotrophin receptor/tumor necrosis factor receptor superfamily member 19(that form a receptor complex that binds all myelin-associated inhibitors), and also paired immunoglobulin-like receptor B. Chondroitin sulfate proteoglycans and repulsive guidance molecule A bind to Nogo receptor 1, Nogo receptor 3, receptor protein tyrosine phosphatase σ and leucocyte common antigen related phosphatase, and neogenin, respectively. Once activated, these receptors initiate downstream signaling pathways, the most common amongst them being the Rho A/ROCK signaling pathway. These signaling cascades result in actin depolymerization, neurite outgrowth inhibition, and failure to regenerate after spinal cord injury. Currently, there are no approved pharmacological treatments to overcome spinal cord injuries other than physical rehabilitation and management of the array of symptoms brought on by spinal cord injuries. However, several novel therapies aiming to modulate these inhibitory proteins and/or their receptors are under investigation in ongoing clinical trials. Investigation has also been demonstrating that combinatorial therapies of growth inhibitors with other therapies, such as growth factors or stem-cell therapies, produce stronger results and their potential application in the clinics opens new venues in spinal cord injury treatment. 展开更多
关键词 chondroitin sulphate proteoglycans collapsin response mediator protein 2 inhibitory molecules leucine-rich repeat and Ig domain containing 1 leucocyte common antigen related myelin-associated glycoprotein neurite outgrowth inhibitor A Nogo receptor 1 Nogo receptor 3 oligodendrocyte myelin glycoprotein p75 neurotrophin receptor Plexin A2 Ras homolog family member A/Rho-associated protein kinase receptor protein tyrosine phosphataseσ repulsive guidance molecule A spinal cord injury tumour necrosis factor receptor superfamily member 19
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Pseudomonas Cyclic Lipopeptide Medpeptin:Biosynthesis and Modulation of Plant Immunity
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作者 Yi-Lin Gu Jun-Zhou Li +4 位作者 Yan Li Shen Cong Jing Wang Yi-Nan Ma Hai-Lei Wei 《Engineering》 SCIE EI CAS CSCD 2023年第9期153-165,共13页
The multifunctional secondary metabolites known as cyclic lipopeptides(CLPs),which are produced by a large variety of bacteria,have become a key category of plant immunity elicitors.Pseudomonas-CLPs(PsCLPs)are extreme... The multifunctional secondary metabolites known as cyclic lipopeptides(CLPs),which are produced by a large variety of bacteria,have become a key category of plant immunity elicitors.Pseudomonas-CLPs(PsCLPs)are extremely diverse in structure and biological activity.However,an understanding of CLP-plant structure–function interactions currently remains elusive.Here,we identify medpeptin,a novel CLP from Pseudomonas mediterranea that consists of 22 amino acids.Medpeptin is synthesized by a non-ribosomal peptide synthase(NRPS)gene cluster and regulated by a quorum-sensing system.Further research indicates that medpeptin does not exhibit antimicrobial activity;instead,it induces plant cell death immunity and confers resistance to bacterial infection.Comparative transcriptome analysis and virus-induced gene silencing(VIGS)reveal a set of immune signaling candidates involved in medpeptin perception.Silencing of a cell-wall leucine-rich repeat extensin protein(NbLRX3)or a receptor-like protein kinase(NbRLK25)—but not BAK1 or SGT1—compromises medpeptin-triggered cell death and resistance to pathogen infection in Nicotiana benthamiana.Our findings point to a noncanonical mechanism of CLP sensing and suggest perspectives for the development of plant disease resistance. 展开更多
关键词 PSEUDOMONAS Cyclic lipopeptide Cell death leucine-rich repeat extension(LRX) Medpeptin Receptor-like kinase(RLK)
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ORYZA SATIVA SPOTTED-LEAF 41(OsSPL41) Negatively Regulates Plant Immunity in Rice
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作者 TAN Jingyi ZHANG Xiaobo +7 位作者 SHANG Huihui LI Panpan WANG Zhonghao LIAO Xinwei XU Xia YANG Shihua GONG Junyi WU Jianli 《Rice science》 SCIE CSCD 2023年第5期426-436,I0017-I0020,共15页
Identification of immunity-associated leucine-rich repeat receptor-like protein kinases(LRR-RLK) is critical to elucidate the LRR-RLK mediated mechanism of plant immunity.Here,we reported the map-based cloning of a no... Identification of immunity-associated leucine-rich repeat receptor-like protein kinases(LRR-RLK) is critical to elucidate the LRR-RLK mediated mechanism of plant immunity.Here,we reported the map-based cloning of a novel rice SPOTTED-LEAF 41(Os SPL41) encoding a putative LRR-RLK protein(Os LRR-RLK41/Os SPL41) that regulated disease responses to the bacterial blight pathogen Xanthomonas oryzae pv.oryzae(Xoo).An 8-bp insertion at position 865 bp in a mutant spotted-leaf 41(spl41) allele led to the formation of purple-brown lesions on leaves.Functional complementation by the wild type allele(Os SPL41) can rescue the mutant phenotype,and the complementary lines showed similar performance to wild type in a number of agronomic,physiological and molecular indices.Os SPL41 was constitutively expressed in all tissues tested,and Os SPL41 contains a typical transmembrane domain critical for its localization to the cell membrane.The mutant exhibited an enhanced level of resistance to Xoo in companion of markedly up-regulated expression of pathogenesis-related genes such as Os PR10a,Os PAL1 and Os NPR1,while the level of salicylic acid was significantly increased in spl41.In contrast,the over-expression lines exhibited a reduced level of H_(2)O_(2) and were much susceptible to Xoo with down-regulated expression of pathogenesis-related genes.These results suggested that Os SPL41 might negatively regulate plant immunity through the salicylic acid signaling pathway in rice. 展开更多
关键词 bacterial blight leucine-rich repeat receptor-like protein kinase plant immunity reactive oxygen species RICE spotted leaf
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云南3种野生稻中抗病基因同源序列的克隆及序列分析 被引量:38
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作者 刘继梅 程在全 +4 位作者 杨明挚 吴成军 王玲仙 孙一丁 黄兴奇 《中国农业科学》 CAS CSCD 北大核心 2003年第3期273-280,共8页
根据已报道的NBS LRR类和STK类抗病基因结构中的氨基酸保守区域 ,设计简并引物 ,通过PCR扩增及克隆 ,从普通野生稻 (OryzarufipogonGriff.)、药用野生稻 (OryzaofficinalisWall.)、疣粒野生稻 (Oryzameye rianaBaill.)中共获得 14类NBS ... 根据已报道的NBS LRR类和STK类抗病基因结构中的氨基酸保守区域 ,设计简并引物 ,通过PCR扩增及克隆 ,从普通野生稻 (OryzarufipogonGriff.)、药用野生稻 (OryzaofficinalisWall.)、疣粒野生稻 (Oryzameye rianaBaill.)中共获得 14类NBS LRR类抗病基因同源序列 ,其中普通野生稻中的有 7类 ,药用野生稻中的有 2类 ,疣粒野生稻中的有 6类。药用野生稻中TO12代表序列与普通野生稻中TR19代表序列 ,同属一类 ,且具有 10 0 %的同源性 ,说明不同种野生稻中的同一类 (聚类 )抗病基因同源序列是完全一致的。同时 ,还获得 5类STK类抗病基因同源序列 ,其中普通野生稻中的有 4类 ;药用野生稻中的有 1类。通过氨基酸同源性比较分析 ,发现笔者克隆到的抗病基因同源序列与已克隆的抗病基因L6、N、Bs2、Prf、Pto、Lr10和Xa2 1等的氨基酸同源性都相当低 (均低于 2 5 % ) ,暗示了这些抗病基因同源序列可能是目前尚未报道的抗病基因的同源序列。 展开更多
关键词 序列分析 野生稻 抗病基因 NBS-lrr同源序列 STK同源序列
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植物抗病基因及其作用机理 被引量:42
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作者 王友红 张鹏飞 陈建群 《植物学通报》 CSCD 北大核心 2005年第1期92-99,共8页
综合近年国内外对植物抗病基因的研究和我们对水稻抗病基因的研究成果,对植物抗病基因进行归纳分类,并就其结构、功能、作用机理和信号传导进行分析和讨论。根据植物抗病基因编码蛋白的保守结构,将植物抗病基因分成NBS-LRR、eLRR-TM、eL... 综合近年国内外对植物抗病基因的研究和我们对水稻抗病基因的研究成果,对植物抗病基因进行归纳分类,并就其结构、功能、作用机理和信号传导进行分析和讨论。根据植物抗病基因编码蛋白的保守结构,将植物抗病基因分成NBS-LRR、eLRR-TM、eLRR-TM-pkinase、STK和其他五大类。不同类型的基因在细胞水平上的分布不一样,NBS、激酶和LRR在不同类型的基因之间结构差异也较大,但是它们通过各不相同的作用机理参与细胞对病原体的防御。 展开更多
关键词 植物抗病 作用机理 抗病基因 水稻 基因编码蛋白 细胞水平 分布 不同类型 TM 病原体
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