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酵母 26S 蛋白酶体的近原子分辨率结构模型。

Near-atomic resolution structural model of the yeast 26S proteasome.

机构信息

Department of Molecular Structural Biology, Max-Planck Institute of Biochemistry, 82152 Martinsried, Germany.

出版信息

Proc Natl Acad Sci U S A. 2012 Sep 11;109(37):14870-5. doi: 10.1073/pnas.1213333109. Epub 2012 Aug 27.

Abstract

The 26S proteasome operates at the executive end of the ubiquitin-proteasome pathway. Here, we present a cryo-EM structure of the Saccharomyces cerevisiae 26S proteasome at a resolution of 7.4 Å or 6.7 Å (Fourier-Shell Correlation of 0.5 or 0.3, respectively). We used this map in conjunction with molecular dynamics-based flexible fitting to build a near-atomic resolution model of the holocomplex. The quality of the map allowed us to assign α-helices, the predominant secondary structure element of the regulatory particle subunits, throughout the entire map. We were able to determine the architecture of the Rpn8/Rpn11 heterodimer, which had hitherto remained elusive. The MPN domain of Rpn11 is positioned directly above the AAA-ATPase N-ring suggesting that Rpn11 deubiquitylates substrates immediately following commitment and prior to their unfolding by the AAA-ATPase module. The MPN domain of Rpn11 dimerizes with that of Rpn8 and the C-termini of both subunits form long helices, which are integral parts of a coiled-coil module. Together with the C-terminal helices of the six PCI-domain subunits they form a very large coiled-coil bundle, which appears to serve as a flexible anchoring device for all the lid subunits.

摘要

26S 蛋白酶体在泛素蛋白酶体途径的执行末端运作。在这里,我们呈现了酿酒酵母 26S 蛋白酶体在 7.4Å 或 6.7Å 分辨率下的冷冻电镜结构(分别为傅里叶壳相关值 0.5 或 0.3)。我们使用这个图谱结合基于分子动力学的灵活拟合,构建了全复合物的近原子分辨率模型。图谱的质量允许我们在整个图谱中分配α-螺旋,这是调节颗粒亚基的主要二级结构元件。我们能够确定 Rpn8/Rpn11 异二聚体的结构,这一结构迄今仍难以捉摸。Rpn11 的 MPN 结构域直接位于 AAA-ATPase N 环上方,这表明 Rpn11 在 AAA-ATPase 模块展开底物之前,立即对其进行去泛素化。Rpn11 的 MPN 结构域与 Rpn8 的 MPN 结构域二聚化,并且两个亚基的 C 末端形成长螺旋,它们是一个螺旋卷曲模块的组成部分。与六个 PCI 结构域亚基的 C 末端螺旋一起,它们形成了一个非常大的螺旋卷曲束,似乎作为所有盖子亚基的灵活锚固装置。

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