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酿酒酵母中核仁小核糖核蛋白(snoRNP)组装蛋白 Pih1 的稳定性受其 C 末端调节。

The stability of the small nucleolar ribonucleoprotein (snoRNP) assembly protein Pih1 in Saccharomyces cerevisiae is modulated by its C terminus.

机构信息

Department of Biological Sciences, University of Toronto, Toronto, Ontario M1C 1A4, Canada.

出版信息

J Biol Chem. 2012 Dec 21;287(52):43205-14. doi: 10.1074/jbc.M112.408849. Epub 2012 Nov 8.

Abstract

Pih1 is an unstable protein and a subunit of the R2TP complex that, in yeast Saccharomyces cerevisiae, also contains the helicases Rvb1, Rvb2, and the Hsp90 cofactor Tah1. Pih1 and the R2TP complex are required for the box C/D small nucleolar ribonucleoprotein (snoRNP) assembly and ribosomal RNA processing. Purified Pih1 tends to aggregate in vitro. Molecular chaperone Hsp90 and its cochaperone Tah1 are required for the stability of Pih1 in vivo. We had shown earlier that the C terminus of Pih1 destabilizes the protein and that the C terminus of Tah1 binds to the Pih1 C terminus to form a stable complex. Here, we analyzed the secondary structure of the Pih1 C terminus and identified two intrinsically disordered regions and five hydrophobic clusters. Site-directed mutagenesis indicated that one predicted intrinsically disordered region IDR2 is involved in Tah1 binding, and that the C terminus of Pih1 contains multiple destabilization or degron elements. Additionally, the Pih1 N-terminal domain, Pih1(1-230), was found to be able to complement the physiological role of full-length Pih1 at 37 °C. Pih1(1-230) as well as a shorter Pih1 N-terminal fragment Pih1(1-195) is able to bind Rvb1/Rvb2 heterocomplex. However, the sequence between the two disordered regions in Pih1 significantly enhances the Pih1 N-terminal domain binding to Rvb1/Rvb2. Based on these data, a model of protein-protein interactions within the R2TP complex is proposed.

摘要

Pih1 是一种不稳定的蛋白质,也是 R2TP 复合物的一个亚基,在酵母酿酒酵母中,该复合物还包含解旋酶 Rvb1、Rvb2 和 Hsp90 辅助因子 Tah1。Pih1 和 R2TP 复合物对于 box C/D 小核仁核糖核蛋白 (snoRNP) 的组装和核糖体 RNA 加工是必需的。纯化的 Pih1 倾向于在体外聚集。分子伴侣 Hsp90 和其共伴侣 Tah1 对于 Pih1 在体内的稳定性是必需的。我们之前已经表明,Pih1 的 C 末端使蛋白质不稳定,并且 Tah1 的 C 末端与 Pih1 的 C 末端结合形成稳定的复合物。在这里,我们分析了 Pih1 C 末端的二级结构,并鉴定了两个固有无序区域和五个疏水区簇。定点突变表明,一个预测的固有无序区域 IDR2 参与 Tah1 结合,并且 Pih1 的 C 末端包含多个不稳定或降解元件。此外,发现 Pih1 N 端结构域 Pih1(1-230)能够在 37°C 下补充全长 Pih1 的生理作用。Pih1(1-230)以及较短的 Pih1 N 端片段 Pih1(1-195)能够与 Rvb1/Rvb2 异源复合物结合。然而,Pih1 中两个无序区之间的序列显著增强了 Pih1 N 端结构域与 Rvb1/Rvb2 的结合。基于这些数据,提出了 R2TP 复合物中蛋白质-蛋白质相互作用的模型。

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