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二聚体高尔基体蛋白 Gorab 作为单体与 Sas6 结合,以介导中心粒复制。

The dimeric Golgi protein Gorab binds to Sas6 as a monomer to mediate centriole duplication.

机构信息

Department of Genetics, University of Cambridge, Cambridge, United Kingdom.

Division of Biology and Biological Engineering, California Institute of Technology, Pasadena, United States.

出版信息

Elife. 2021 Mar 11;10:e57241. doi: 10.7554/eLife.57241.

Abstract

The duplication and ninefold symmetry of the centriole requires that the cartwheel molecule, Sas6, physically associates with Gorab, a trans-Golgi component. How Gorab achieves these disparate associations is unclear. Here, we use hydrogen-deuterium exchange mass spectrometry to define Gorab's interacting surfaces that mediate its subcellular localization. We identify a core stabilization sequence within Gorab's C-terminal coiled-coil domain that enables homodimerization, binding to Rab6, and thereby trans-Golgi localization. By contrast, part of the Gorab monomer's coiled-coil domain undergoes an antiparallel interaction with a segment of the parallel coiled-coil dimer of Sas6. This stable heterotrimeric complex can be visualized by electron microscopy. Mutation of a single leucine residue in Sas6's Gorab-binding domain generates a Sas6 variant with a sixteenfold reduced binding affinity for Gorab that cannot support centriole duplication. Thus, Gorab dimers at the Golgi exist in equilibrium with Sas6-associated monomers at the centriole to balance Gorab's dual role.

摘要

中心体的复制和九倍对称性要求车轮分子 Sas6 与跨高尔基成分 Gorab 物理结合。Gorab 如何实现这些不同的关联尚不清楚。在这里,我们使用氘氢交换质谱法来定义介导其亚细胞定位的 Gorab 相互作用表面。我们在 Gorab 的 C 端卷曲螺旋结构域内识别出一个核心稳定序列,该序列能够促进同源二聚体的形成、与 Rab6 的结合,从而实现跨高尔基定位。相比之下,Gorab 单体卷曲螺旋结构域的一部分与 Sas6 的平行卷曲螺旋二聚体的一段发生反平行相互作用。这种稳定的异三聚体复合物可以通过电子显微镜观察到。Sas6 的 Gorab 结合结构域中单个亮氨酸残基的突变会产生一种 Sas6 变体,其与 Gorab 的结合亲和力降低十六倍,无法支持中心体的复制。因此,高尔基体上的 Gorab 二聚体与中心体上与 Sas6 相关的单体处于平衡状态,以平衡 Gorab 的双重作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0c4/8009671/f46c7db338b5/elife-57241-fig1.jpg

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