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mRNA 输出因子 Yra1 与 RNA 聚合酶 II C 端结构域的共转录关联。

Cotranscriptional association of mRNA export factor Yra1 with C-terminal domain of RNA polymerase II.

机构信息

Department of Biochemistry, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

J Biol Chem. 2011 Oct 21;286(42):36385-95. doi: 10.1074/jbc.M111.268144. Epub 2011 Aug 19.

Abstract

The unique C-terminal domain (CTD) of RNA polymerase II, composed of tandem heptad repeats of the consensus sequence YSPTSPS, is subject to differential phosphorylation throughout the transcription cycle. Several RNA processing factors have been shown to bind the phosphorylated CTD and use it to localize to nascent pre-mRNA during transcription. In Saccharomyces cerevisiae, the mRNA export protein Yra1 (ALY/RNA export factor in metazoa) cotranscriptionally associates with mRNA and delivers it to the nuclear pore complex for export to the cytoplasm. Here we report that Yra1 directly binds in vitro the hyperphosphorylated form of the CTD characteristic of elongating RNA polymerase II and contains a phospho-CTD-interacting domain within amino acids 18-184, which also include an "RNA recognition motif" (RRM) (residues 77-184). Using UV cross-linking, we showed that the RRM alone binds RNA, although a larger segment extending to the C terminus (amino acids 77-226) displayed stronger RNA binding activity. Although the RRM is implicated in both RNA and CTD binding, RRM point mutations separated these two functions. Both functions are important in vivo as RNA binding-defective or CTD binding-defective versions of Yra1 engendered growth and mRNA export defects. We also report the construction and characterization of a useful new temperature-sensitive YRA1 allele (R107A/F126A). Using ChIP, we demonstrated that removing the N-terminal 76 amino acids of Yra1 (all of the phospho-CTD-interacting domain up to the RRM) results in a 10-fold decrease in Yra1 recruitment to genes during elongation. These results indicate that the phospho-CTD is likely involved directly in the cotranscriptional recruitment of Yra1.

摘要

RNA 聚合酶 II 的独特 C 端结构域(CTD)由 YSPTSPS 共识序列的串联七肽重复组成,在整个转录周期中受到不同的磷酸化修饰。已经证明,一些 RNA 加工因子可以结合磷酸化的 CTD,并在转录过程中利用它定位到新生的前体 mRNA。在酿酒酵母中,mRNA 输出蛋白 Yra1(无脊椎动物中的ALY/RNA 输出因子)与 mRNA 共转录结合,并将其递送至核孔复合物以输出到细胞质。在这里,我们报告 Yra1 直接结合体外的高度磷酸化形式的 CTD 是延伸 RNA 聚合酶 II 的特征,并在氨基酸 18-184 内包含一个磷酸化 CTD 相互作用域,其中还包含一个“RNA 识别基序”(RRM)(残基 77-184)。使用 UV 交联,我们表明 RRM 单独结合 RNA,尽管延伸到 C 末端的较大片段(氨基酸 77-226)显示出更强的 RNA 结合活性。尽管 RRM 同时涉及 RNA 和 CTD 结合,但 RRM 点突变将这两种功能分开。这两种功能在体内都很重要,因为 RNA 结合缺陷或 CTD 结合缺陷的 Yra1 版本会导致生长和 mRNA 输出缺陷。我们还报告了一种有用的新型温度敏感 YRA1 等位基因(R107A/F126A)的构建和特征。使用 ChIP,我们证明去除 Yra1 的 N 端 76 个氨基酸(直到 RRM 的所有磷酸化 CTD 相互作用域)会导致 Yra1 在延伸过程中向基因的募集减少 10 倍。这些结果表明,磷酸化 CTD 可能直接参与 Yra1 的共转录募集。

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