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果蝇热休克蛋白70(hsp 70)基因体外转录激活所需的序列。

Sequences required for in vitro transcriptional activation of a Drosophila hsp 70 gene.

作者信息

Topol J, Ruden D M, Parker C S

出版信息

Cell. 1985 Sep;42(2):527-37. doi: 10.1016/0092-8674(85)90110-2.

Abstract

The hsp 70 gene of Drosophila contains three domains to which a heat shock gene specific transcription factor (HSTF) binds. In addition to the previously described 55 bp binding domain proximal to the TAT homology, there are two 25 bp binding sites farther upstream. Footprinting studies with 5' and 3' deletion mutations show two contiguous HSTF binding sites of different intrinsic affinities within the 55 bp binding domain. Determinations made with an agarose-acrylamide gel assay suggest that the HSTF possesses a 12.5-fold higher intrinsic affinity for the site closest to the TATA homology than for the more distal site. Binding of HSTF to the distal site thus appears cooperative, requiring occupancy of the first site. Transcription studies in vitro on the 5' deletions with nuclear extracts and reconstitution experiments show that the TATA proximal site alone, is insufficient for maximal transcriptional activation of the hsp 70 gene.

摘要

果蝇的热休克蛋白70(hsp 70)基因包含三个结构域,热休克基因特异性转录因子(HSTF)可与之结合。除了先前描述的靠近TAT同源序列的55 bp结合结构域外,在更上游还有两个25 bp的结合位点。对5'和3'缺失突变进行的足迹分析表明,在55 bp结合结构域内存在两个具有不同内在亲和力的相邻HSTF结合位点。用琼脂糖-丙烯酰胺凝胶分析进行的测定表明,HSTF对最靠近TATA同源序列的位点的内在亲和力比对更远端位点的内在亲和力高12.5倍。因此,HSTF与远端位点的结合似乎具有协同性,需要先占据第一个位点。用核提取物对5'缺失进行的体外转录研究和重组实验表明,仅TATA近端位点不足以实现hsp 70基因的最大转录激活。

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