高尔基膜蛋白接头Vps74/yGOLPH3客户端结合位点的鉴定

IF 4.1 2区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Agnieszka M. Lesniak , Ziyun Ye , David K. Banfield
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引用次数: 0

摘要

Vps74和它的哺乳动物对应物GOLPH3是COPI相关的蛋白质分选接头,其功能是通过结合短的细胞质暴露的n端来维持多种高尔基整体膜蛋白客户的池分布。在这里,我们确定了酵母GOLPH3的客户端结合位点(Vps74),它映射到两个进化上保守的膜表面环,包括介导GOLPH3与PI4P结合的残基,以及膜结合的β发夹。通过正交实验,我们分离出一种抑制性抗Vps74纳米体(它也与GOLPH3s结合),我们证实了客户端结合位点,并发现Sac1和Arf1与Vps74结合阻断了客户端访问。我们还确定了Vps74募集到高尔基膜的另一种模式,即接头直接结合到其客户端n端。本研究阐明了Vps74的分子机制,并鉴定了一种具有潜在治疗应用价值的抑制GOLPH3纳米体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Identification of the client-binding site on the Golgi membrane protein adaptor Vps74/yGOLPH3

Identification of the client-binding site on the Golgi membrane protein adaptor Vps74/yGOLPH3
Vps74 and its mammalian counterpart GOLPH3 are COPI associated protein sorting adaptors that function to maintain the cisternal distributions of a diversity of Golgi integral membrane protein clients by binding to their short cytoplasmically exposed N-termini. Here, we identify the client-binding site on yeast GOLPH3 (Vps74) which maps to two evolutionarily conserved loops on the membrane-facing surface, and includes residues mediating binding of GOLPH3s to PI4P, as well as the membrane-binding β hairpin. As an orthogonal approach, we isolated an inhibitory anti-Vps74 nanobody (which also binds to GOLPH3s) with which we corroborate the client-binding site and reveal that Sac1 and Arf1 binding to Vps74 blocks client access. We also identify an additional mode for the recruitment of Vps74 to Golgi membranes whereby the adaptor binds directly to its client N-termini. This study elucidates the molecular mechanism of Vps74 and identifies an inhibitory GOLPH3 nanobody with potential therapeutic applications.
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来源期刊
iScience
iScience Multidisciplinary-Multidisciplinary
CiteScore
7.20
自引率
1.70%
发文量
1972
审稿时长
6 weeks
期刊介绍: Science has many big remaining questions. To address them, we will need to work collaboratively and across disciplines. The goal of iScience is to help fuel that type of interdisciplinary thinking. iScience is a new open-access journal from Cell Press that provides a platform for original research in the life, physical, and earth sciences. The primary criterion for publication in iScience is a significant contribution to a relevant field combined with robust results and underlying methodology. The advances appearing in iScience include both fundamental and applied investigations across this interdisciplinary range of topic areas. To support transparency in scientific investigation, we are happy to consider replication studies and papers that describe negative results. We know you want your work to be published quickly and to be widely visible within your community and beyond. With the strong international reputation of Cell Press behind it, publication in iScience will help your work garner the attention and recognition it merits. Like all Cell Press journals, iScience prioritizes rapid publication. Our editorial team pays special attention to high-quality author service and to efficient, clear-cut decisions based on the information available within the manuscript. iScience taps into the expertise across Cell Press journals and selected partners to inform our editorial decisions and help publish your science in a timely and seamless way.
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