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首页> 外文期刊>Journal of Molecular Biology >Crystal structures of the S. cerevisiae Spt6 core and C-terminal tandem SH2 domain.
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Crystal structures of the S. cerevisiae Spt6 core and C-terminal tandem SH2 domain.

机译:酿酒酵母Spt6核心和C端串联SH2域的晶体结构。

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摘要

The conserved and essential eukaryotic protein Spt6 functions in transcription elongation, chromatin maintenance, and RNA processing. Spt6 has three characterized functions. It is a histone chaperone capable of reassembling nucleosomes, a central component of transcription elongation complexes, and is required for recruitment of RNA processing factors to elongating RNA polymerase II (RNAPII). Here, we report multiple crystal structures of the 168-kDa Spt6 protein from Saccharomyces cerevisiae that together represent essentially all of the ordered sequence. Our two structures of the approximately 900-residue core region reveal a series of putative nucleic acid and protein-protein interaction domains that fold into an elongated form that resembles the bacterial protein Tex. The similarity to a bacterial transcription factor suggests that the core domain performs nucleosome-independent activities, and as with Tex, we find that Spt6 binds DNA. Unlike Tex, however, the Spt6 S1 domain does not contribute to this activity. Crystal structures of the Spt6 C-terminal region reveal a tandem SH2 domain structure composed of two closely associated SH2 folds. One of these SH2 folds is cryptic, while the other shares striking structural similarity with metazoan SH2 domains and possesses structural features associated with the ability to bind phosphorylated substrates including phosphotyrosine. Binding studies with phosphopeptides that mimic the RNAPII C-terminal domain revealed affinities typical of other RNAPII C-terminal domain-binding proteins but did not indicate a specific interaction. Overall, these findings provide a structural foundation for understanding how Spt6 encodes several distinct functions within a single polypeptide chain.
机译:保守的必不可少的真核蛋白Spt6在转录延伸,染色质维持和RNA加工中起作用。 Spt6具有三个特征功能。它是一种能够重组核小体的组蛋白分子伴侣,核小体是转录延伸复合物的重要组成部分,是将RNA加工因子募集至延长RNA聚合酶II(RNAPII)所必需的。在这里,我们报告了来自酿酒酵母的168 kDa Spt6蛋白的多个晶体结构,它们一起代表了基本上所有的有序序列。我们的大约900个残基核心区域的两个结构揭示了一系列推定的核酸和蛋白质-蛋白质相互作用结构域,它们折叠成类似于细菌蛋白Tex的细长形式。不依赖核小体的活动,以及与Tex一样,我们发现Spt6结合DNA。但是,与Tex不同,Spt6 S1域对此活动没有贡献。 Spt6 C端区域的晶体结构揭示了由两个紧密相关的SH2折叠组成的串联SH2域结构。这些SH2折叠中的一个是隐性的,而其他折叠具有与后生动物SH2结构域的结构相似性,并具有与结合磷酸化底物(包括磷酸酪氨酸)的能力相关的结构特征。与模仿RNAPII C末端结构域的磷酸肽的结合研究表明,其他RNAPII C末端结构域结合蛋白具有典型的亲和力,但未显示特异性相互作用。总体而言,这些发现为理解Spt6如何编码单个多肽链中的几个不同功能提供了结构基础。

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