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泛素连接酶E3 Nedd4-like家族与癌症关系的研究进展 被引量:2
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作者 王娟 魏素菊 《肿瘤防治研究》 CAS CSCD 北大核心 2015年第7期725-729,共5页
泛素蛋白酶体系统参与体内80%以上蛋白质的降解,调节体内细胞增殖,分化及存活,其功能紊乱可导致包括癌症在内的多种疾病。该系统中泛素连接酶E3 Nedd4-like家族已被证实在多种癌症发生、发展中发挥重要作用。泛素连接酶E3 Nedd4-like家... 泛素蛋白酶体系统参与体内80%以上蛋白质的降解,调节体内细胞增殖,分化及存活,其功能紊乱可导致包括癌症在内的多种疾病。该系统中泛素连接酶E3 Nedd4-like家族已被证实在多种癌症发生、发展中发挥重要作用。泛素连接酶E3 Nedd4-like家族成员能够调节多种蛋白的泛素化、溶酶体及蛋白酶体降解作用及细胞核转位作用,因而影响着肿瘤发生过程中多条信号转导通路,如TGFβ、EGF、IGF、VEGF、SDF-1及TNFα通路。此外,该家族还可直接调节Smads、p53、KLF、RUNX及Jun等多种癌相关转录因子。由此可见,充分了解E3 Nedd4-like家族对癌症的潜在影响将有利于对生物标志物及药物靶点的认知与开发。现将该家族的主要特点、作用机制及在多种癌症中的表达情况作一综述。 展开更多
关键词 泛素连接酶E3 nedd4-like家族 泛素化 癌症
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A Novel QTL qTGW3 Encodes the GSK3/ SHAGGY-Like Kinase OsGSK5/OsSK41 that Interacts with OsARF4 to Negatively Regulate Grain Size and Weight in Rice 被引量:61
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作者 Zejun Hu Sun-Jie Lu +13 位作者 Mei-Jing Wang Haohua He Le Sun Hongru Wang Xue-Huan Liu Ling Jiang Jing-Liang sun Xiaoyun Xin Wei Kong Chengcai Chu Hong-Wei Xue Jinshui Yang Xiaojin Luo Jian-Xiang Liu 《Molecular Plant》 SCIE CAS CSCD 2018年第5期736-749,共14页
Grain size and shape are important determinants of grain weight and yield in rice. Here, we report a new major quantitative trait locus (QTL), qTGW3, that controls grain size and weight in rice. This locus, qTGW3, e... Grain size and shape are important determinants of grain weight and yield in rice. Here, we report a new major quantitative trait locus (QTL), qTGW3, that controls grain size and weight in rice. This locus, qTGW3, encodes OsSK41 (also known as OsGSK5), a member of the GLYCOGEN SYNTHASE KINASE 3/SHAGGY-like family. Rice near-isogenic lines carrying the loss-of-function allele of OsSK41 have increased grain length and weight. We demonstrate that OsSK41 interacts with and phosphorylates AUXIN RESPONSE FACTOR 4 (OsARF4). Co-expression of OsSK41 with OsARF4 increases the accumulation of OsARF4 in rice protoplasts. Loss of function of OsARF4 results in larger rice grains. RNA-sequencing analysis suggests that OsARF4 and OsSK41 repress the expression of a common set of downstream genes, including some auxin-responsive genes, during rice grain development. The loss-of-function form of OsSK41 at qTGW3 represents a rare allele that has not been extensively utilized in rice breeding. Suppression of OsSK41 function by either targeted gene editing or QTL pyramiding enhances rice grain size and weight. Thus, our study reveals the important role of OsSK41 in rice grain development and provides new candidate genes for genetic improvement of grain yield in rice and perhaps in other cereal crops. 展开更多
关键词 QTL mapping GSK3-like family protein OsGSK5 OsARF4 grain size and weight Oryza sativa
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