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首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Deletion of the non-essential Rpb9 subunit of RNA polymerase II results in pleiotropic phenotypes in Schizosaccharomyces pombe
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Deletion of the non-essential Rpb9 subunit of RNA polymerase II results in pleiotropic phenotypes in Schizosaccharomyces pombe

机译:缺失RNA聚合酶II的非基本RPB9亚基导致SchioyropicsPombe中的磷酸术表型

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摘要

Schizosaccharomyces pombe RNA polymerase II comprises twelve different subunits. Its Rpb9 subunit comprises 113 amino acids, and is the only non-essential subunit of S. pombe RNA polymerase II. However, its functions have not been studied in S. pombe. The results presented in this study demonstrate that Rpb9 is involved in regulating growth under optimum and certain stress conditions in S. pombe. To further address the role (s) of various domains of this subunit in regulating these phenotypes, deletion mutant analysis was done. We observed that the region spanning 1-74 amino acids, encompassing the amino-terminal zinc finger domain and the linker region of Rpb9 was able to rescue the phenotypes associated with rpb9(+)deletion. We also demonstrate that the functions of this subunit are only partially conserved among yeast and humans. Our computational biology approaches provide a structural basis for the differential role of various Rpb9 domains in S. pombe. Furthermore, using these tools we show that there has been a co-evolution of the interaction residues between the Rpb9 subunit and the two largest subunits of RNA polymerase II, allowing for a more stringent organism-specific packing. Taken together, our results have provided functional and structural insights into the Rpb9 subunit of S. pombe.
机译:Schizosaccharomyces Pombe RNA聚合酶II包含12个不同的亚基。其RPB9亚基包含113个氨基酸,是S.Pombe RNA聚合酶II的唯一非必需亚基。但是,它的功能尚未在S.Pombe中学。本研究表明的结果表明RPB9参与调节在S.Pombe中最佳和某些应激条件下的增长。为了进一步解决该亚基的各种结构域的作用,在调节这些表型上,完成缺失突变分析。我们观察到跨越1-74个氨基酸的区域,包括氨基末端锌指结构域和RPB9的接头区域能够拯救与RPB9(+)缺失相关的表型。我们还证明该亚基的功能仅在酵母和人类之间部分地保守。我们的计算生物学方法为S.Pombe中各种RPB9域的差异作用提供了结构依据。此外,使用这些工具,我们表明RPB9亚基与RNA聚合酶II的两个最大亚基之间的相互作用残留物的共同演变,允许更严格的有机体特异性包装。我们的结果占据了,我们的结果为S.Pombe的RPB9亚基提供了功能和结构见解。

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