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Biogenesis and regulation of the let-7 miRNAs and their functional implications 被引量:27
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作者 Hosuk Lee Sungwook Han +1 位作者 Chang Seob Kwon Daeyoup Lee 《Protein & Cell》 SCIE CAS CSCD 2016年第2期100-113,共14页
The let-7 miRNAwas one of the first miRNAs discovered in the nematode, Caenorhabditis elegans, and its biological functions show a high level of evolutionary conservation from the nematode to the human. Unlike in C. e... The let-7 miRNAwas one of the first miRNAs discovered in the nematode, Caenorhabditis elegans, and its biological functions show a high level of evolutionary conservation from the nematode to the human. Unlike in C. elegans, higher animals have multiple isoforms of let-7 miRNAs; these isoforms share a consensus sequence called the 'seed sequence' and these isoforms are categorized into let-7 miRNA family. The expression of let-7 family is required for developmental timing and tumor suppressor function, but must be suppressed for the self-renewal of stem cells. Therefore, let-7 miRNA biogenesis must be carefully controlled. To generate a let-7 miRNA, a primary transcript is produced by RNA polymerase Ⅱ and then subsequently processed by Drosha/DGCR8, TUTase, and Dicer. Because dysregulation of let-7 processing is deleterious, biogenesis of let-7 is tightly regulated by cellular factors, such as the RNA binding proteins, LIN28A/B and DIS3L2. In this review, we discuss the biological functions and biogenesis of let-7 miRNAs, focusing on the molecular mechanisms of regulation of let-7 biogenesis in ver- tebrates, such as the mouse and the human. 展开更多
关键词 miRNA processing miRNA biogenesis let-7 family tutase LIN28A/B
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Star-PAP蛋白的纯化分析及其限定性因子的分离
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作者 于春雷 田平平 +2 位作者 吴传芳 欧阳劲 秦岭 《四川大学学报(自然科学版)》 CAS CSCD 北大核心 2014年第1期201-205,共5页
克隆并构建了Star-PAP的表达载体,然后将该载体转染HEK293细胞,经纯化得到了重组的Star-PAP蛋白.以细胞总RNA和体外转录的U6snRNA为底物,对纯化到的Star-PAP的TUTase活性进行了分析.结果显示重组的Star-PAP能够对细胞总RNA以及U6snRNA... 克隆并构建了Star-PAP的表达载体,然后将该载体转染HEK293细胞,经纯化得到了重组的Star-PAP蛋白.以细胞总RNA和体外转录的U6snRNA为底物,对纯化到的Star-PAP的TUTase活性进行了分析.结果显示重组的Star-PAP能够对细胞总RNA以及U6snRNA进行体外尿苷化修饰,表明纯化到的Star-PAP具有良好的TUTase活性.此外,使用HPLC分离得到了具有U6snRNA底物特异性的细胞核组分.该组分除了含有StarPAP外,还含有一种未知蛋白,该未知蛋白可能就是赋予Star-PAP底物特异性的限定性因子. 展开更多
关键词 Star—PAP U6 SNRNA tutase 末端尿苷酸转移酶
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