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在全酶的Sin4p组分发生突变的酵母中,NC2阻遏物是可有可无的,并且在体内发挥与Mot1p类似的作用。

The NC2 repressor is dispensable in yeast mutated for the Sin4p component of the holoenzyme and plays roles similar to Mot1p in vivo.

作者信息

Lemaire M, Xie J, Meisterernst M, Collart M A

机构信息

Département de Biochimie Médicale, CMU, 1 rue Michel Servet, 1211 Geneva 4, Switzerland.

出版信息

Mol Microbiol. 2000 Apr;36(1):163-73. doi: 10.1046/j.1365-2958.2000.01839.x.

Abstract

NC2 (Dr1/DRAP1) and Mot1p are global repressors of transcription that have been isolated in both Saccharomyces cerevisiae and humans. NC2 is a dimeric histone-fold complex that represses RNA polymerase II transcription through binding to TBP and inhibition of TFIIA and TFIIB. Mot1p is an ATPase that removes DNA-bound TBP upon ATP hydrolysis. In this work, we studied the core promoter specificity of NC2 in vivo using a strain that carries mutated NC2beta activity. We show that NC2, like Mot1p, is required for transcription of the HIS3 and HIS4 TATA-less core promoters. Furthermore, whereas neither Mot1p nor NC2 appear to function as repressors of the HIS3 gene in cells growing exponentially in glucose, we find that both are required for repression of the HIS3 TATA promoter when cells go through the diauxic shift. Thus, the activity of these factors is similarly regulated depending upon the physiological conditions, and it appears that core promoters activated or repressed by them in vivo might be distinguishable by whether or not they contain a canonical TATA sequence. Finally, although NC2 is an essential factor for yeast viability, we isolated a mutation in a non-essential component of the holoenzyme, Sin4p, that bypasses the requirement for NC2.

摘要

NC2(Dr1/DRAP1)和Mot1p是转录的全局抑制因子,已在酿酒酵母和人类中分离得到。NC2是一种二聚体组蛋白折叠复合体,通过与TBP结合并抑制TFIIA和TFIIB来抑制RNA聚合酶II转录。Mot1p是一种ATP酶,在ATP水解时可去除与DNA结合的TBP。在这项工作中,我们使用携带突变型NC2β活性的菌株在体内研究了NC2的核心启动子特异性。我们发现,与Mot1p一样,NC2是HIS3和HIS4无TATA核心启动子转录所必需的。此外,虽然在以葡萄糖为碳源指数生长的细胞中,Mot1p和NC2似乎都不发挥HIS3基因抑制因子的作用,但我们发现当细胞经历二次生长转换时,两者都是HIS3 TATA启动子抑制所必需的。因此,这些因子的活性根据生理条件受到类似的调节,并且在体内被它们激活或抑制的核心启动子似乎可以通过是否包含典型的TATA序列来区分。最后,虽然NC2是酵母生存力的必需因子,但我们在全酶的一个非必需成分Sin4p中分离到一个突变,该突变绕过了对NC2的需求。

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