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一种改变体内转录和体外DNA结合的酵母TFIID突变体的生化与遗传学特征分析。

Biochemical and genetic characterization of a yeast TFIID mutant that alters transcription in vivo and DNA binding in vitro.

作者信息

Arndt K M, Ricupero S L, Eisenmann D M, Winston F

机构信息

Department of Genetics, Harvard Medical School, Boston, Massachusetts 02115.

出版信息

Mol Cell Biol. 1992 May;12(5):2372-82. doi: 10.1128/mcb.12.5.2372-2382.1992.

Abstract

A mutation in the gene that encodes Saccharomyces cerevisiae TFIID (SPT15), which was isolated in a selection for mutations that alter transcription in vivo, changes a single amino acid in a highly conserved region of the second direct repeat in TFIID. Among eight independent spt15 mutations, seven cause this same amino acid change, Leu-205 to Phe. The mutant TFIID protein (L205F) binds with greater affinity than that of wild-type TFIID to at least two nonconsensus TATA sites in vitro, showing that the mutant protein has altered DNA binding specificity. Site-directed mutations that change Leu-205 to five different amino acids cause five different phenotypes, demonstrating the importance of this amino acid in vivo. Virtually identical phenotypes were observed when the same amino acid changes were made at the analogous position, Leu-114, in the first repeat of TFIID. Analysis of these mutations and additional mutations in the most conserved regions of the repeats, in conjunction with our DNA binding results, suggests that these regions of the repeats play equivalent roles in TFIID function, possibly in TATA box recognition.

摘要

在一项针对体内改变转录的突变的筛选中分离出的编码酿酒酵母TFIID(SPT15)的基因突变,使TFIID第二个直接重复序列的高度保守区域中的一个氨基酸发生了改变。在八个独立的spt15突变中,有七个导致了相同的氨基酸变化,即Leu-205变为Phe。突变型TFIID蛋白(L205F)在体外与至少两个非共有TATA位点的结合亲和力高于野生型TFIID,表明突变蛋白改变了DNA结合特异性。将Leu-205改变为五种不同氨基酸的定点突变导致了五种不同的表型,证明了该氨基酸在体内的重要性。当在TFIID的第一个重复序列中的类似位置Leu-114进行相同的氨基酸改变时,观察到了几乎相同的表型。对这些突变以及重复序列最保守区域中的其他突变进行分析,并结合我们的DNA结合结果,表明重复序列的这些区域在TFIID功能中发挥着等效作用,可能在TATA框识别中起作用。

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