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人c-fos血清反应因子结合位点的点突变分析

Point mutational analysis of the human c-fos serum response factor binding site.

作者信息

Leung S, Miyamoto N G

机构信息

Division of Biological Research, Ontario Cancer Institute, Toronto, Canada.

出版信息

Nucleic Acids Res. 1989 Feb 11;17(3):1177-95. doi: 10.1093/nar/17.3.1177.

Abstract

A series of point mutants were generated in the human c-fos dyad symmetry element (DSE), found within the c-fos serum response element, to study the sequence requirements for its interaction with the human HeLa cell serum response factor (SRF). Plasmids that contain base substitutions within a core CC(A/T)6GG motif in the center of the DSE did not compete, or competed very poorly, with the wild-type c-fos DSE for formation of a specific SRF-DSE complex in vitro. The CC(A/T)6GG motif is not sufficient for maximal binding of SRF, as several plasmids that contain base substitutions in the sequences flanking this core motif competed either poorer or better than the wild-type c-fos DSE for SRF binding. Evidence is presented that supports the idea that SRF binds in a symmetrical fashion. Results of in vivo transient expression assays in HeLa cells suggest that negative regulation of c-fos transcription observed in serum-deprived cells is mediated through SRF binding to the DSE.

摘要

在人c-fos血清反应元件内发现的人c-fos二元对称元件(DSE)中产生了一系列点突变体,以研究其与人HeLa细胞血清反应因子(SRF)相互作用的序列要求。在DSE中心的核心CC(A/T)6GG基序内含有碱基替换的质粒,在体外与野生型c-fos DSE竞争形成特异性SRF-DSE复合物时,要么不竞争,要么竞争能力很差。CC(A/T)6GG基序不足以实现SRF的最大结合,因为一些在该核心基序侧翼序列中含有碱基替换的质粒,与野生型c-fos DSE竞争SRF结合时,竞争能力要么更差,要么更好。有证据支持SRF以对称方式结合的观点。HeLa细胞体内瞬时表达分析结果表明,血清剥夺细胞中观察到的c-fos转录的负调控是通过SRF与DSE结合介导的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9af4/331729/9dd331852273/nar00212-0354-a.jpg

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