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Nucleosome remodeling and transcriptional repression are distinct functions of Isw1 in Saccharomyces cerevisiae.

机译:在酿酒酵母中,核小体重塑和转录抑制是Isw1的独特功能。

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摘要

The SANT domain is a nucleosome recognition module found in transcriptional regulatory proteins, including chromatin-modifying enzymes. It shows high functional degeneracy between species, varying in sequence and copy number. Here, we investigate functions in vivo associated with two SANT motifs, SANT and SLIDE, in the Saccharomyces cerevisiae Isw1 chromatin-remodeling ATPase. We show that differences in the primary structures of the SANT and SLIDE domains in yeast and Drosophila melanogaster reflect their different functions. In yeast, the SLIDE domain is required for histone interactions, while this is a function of the SANT domain in flies. In yeast, both motifs are required for optimal association with chromatin and for formation of the Isw1b complex (Isw1, Ioc2, and Ioc4). Moreover, nucleosome remodeling at the MET16 locus is defective in strains lacking the SANT or SLIDE domain. In contrast, the SANT domain is dispensable for the interaction between Isw1 and Ioc3 in the Isw1a complex. We show that, although defective in nucleosome remodeling, Isw1 lacking the SANT domain is able to repress transcription initiation at the MET16 promoter. Thus, chromatin remodeling and transcriptional repression are distinct activities of Isw1.
机译:SANT结构域是在转录调节蛋白(包括染色质修饰酶)中发现的核小体识别模块。它显示出物种之间的高功能简并性,其序列和拷贝数各不相同。在这里,我们调查了酿酒酵母Isw1染色质重塑ATPase中与两个SANT模体SANT和SLIDE相关的体内功能。我们表明,在酵母和果蝇SANT和SLIDE域的一级结构中的差异反映了它们的不同功能。在酵母中,组蛋白相互作用需要SLIDE结构域,而这是果蝇中SANT结构域的功能。在酵母中,两个基序都是与染色质最佳结合和形成Isw1b复合物(Isw1,Ioc2和Ioc4)所必需的。此外,在缺少SANT或SLIDE结构域的菌株中,MET16基因座的核小体重塑是有缺陷的。相反,对于Isw1a复合体中Isw​​1和Ioc3之间的相互作用,SANT域是必不可少的。我们显示,尽管核小体重构存在缺陷,但缺少SANT结构域的Isw1能够抑制MET16启动子的转录起始。因此,染色质重塑和转录抑制是Isw1的不同活动。

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