Waldschmidt R, Wanandi I, Seifart K H
Institut für Molekularbiologie und Tumorforschung, Marburg, FRG.
EMBO J. 1991 Sep;10(9):2595-603. doi: 10.1002/j.1460-2075.1991.tb07801.x.
Transcription factors, required for the basal expression of the mouse U6 gene were identified in extracts from HeLa cells. This gene is transcribed at least four times more efficiently than its human counterpart in extracts from mouse or HeLa cells and hence provides an excellent in vitro system for the identification of transcription factors involved in the basal expression of mammalian U6 genes. At least four separate protein components were found to be required in addition to RNA polymerase III for correct synthesis of U6 RNA in vitro. These correspond to: (i) TFIIIB; (ii) a heat labile activity contained in a protein fraction enriched in TFIID; (iii) an, as yet, uncharacterized component contained in the flow-through upon rechromatography on phosphocellulose, and finally; (iv) a protein specifically binding to the mouse U6 gene promoter and transactivating its expression. Transcription factors IIIA and IIIC are not involved in mammalian U6 transcription in vitro. The U6-specific transcription factor has a molecular mass of approximately 90 +/- 10 kDa. It specifically binds to the U6 gene from bp -42 to -78 on the coding and from bp -37 to -79 on the non-coding strand thereby centrally encompassing the PSE motif of the mouse U6 promoter. The binding activity of this protein is correlated with the efficiency with which the U6 gene is transcribed in vitro, thereby indicating a crucial role of the PSE-binding protein for U6 transcription.
在HeLa细胞提取物中鉴定出了小鼠U6基因基础表达所需的转录因子。在小鼠或HeLa细胞提取物中,该基因的转录效率至少比其人类对应基因高四倍,因此为鉴定参与哺乳动物U6基因基础表达的转录因子提供了一个出色的体外系统。发现除RNA聚合酶III外,至少还需要四种独立的蛋白质成分才能在体外正确合成U6 RNA。它们分别对应于:(i)TFIIIB;(ii)富含TFIID的蛋白质组分中所含的热不稳定活性;(iii)在磷酸纤维素上再色谱时流过液中所含的一种尚未鉴定的成分,最后;(iv)一种与小鼠U6基因启动子特异性结合并激活其表达的蛋白质。转录因子IIIA和IIIC不参与体外哺乳动物U6转录。U6特异性转录因子的分子量约为90 +/- 10 kDa。它特异性结合编码链上-42至-78 bp以及非编码链上-37至-79 bp的U6基因,从而在中心位置包含小鼠U6启动子的PSE基序。该蛋白质的结合活性与U6基因在体外的转录效率相关,从而表明PSE结合蛋白对U6转录起着关键作用。