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一种三元膜蛋白复合物将纺锤极体锚定在芽殖酵母的核膜中。

A ternary membrane protein complex anchors the spindle pole body in the nuclear envelope in budding yeast.

作者信息

Kupke Thomas, Malsam Jörg, Schiebel Elmar

机构信息

Zentrum für Molekulare Biologie der Universität Heidelberg, DKFZ-ZMBH Allianz, Im Neuenheimer Feld 282, D-69120 Heidelberg, Germany.

Biochemie-Zentrum der Universität Heidelberg (BZH), Im Neuenheimer Feld 328, D-69120 Heidelberg, Germany.

出版信息

J Biol Chem. 2017 May 19;292(20):8447-8458. doi: 10.1074/jbc.M117.780601. Epub 2017 Mar 29.

Abstract

In budding yeast (e) the multilayered spindle pole body (SPB) is embedded in the nuclear envelope (NE) at fusion sites of the inner and outer nuclear membrane. The SPB is built from 18 different proteins, including the three integral membrane proteins Mps3, Ndc1, and Mps2. These membrane proteins play an essential role in the insertion of the new SPB into the NE. How the huge core structure of the SPB is anchored in the NE has not been investigated thoroughly until now. The present model suggests that the NE protein Mps2 interacts via Bbp1 with Spc29, one of the coiled-coil proteins forming the central plaque of the SPB. To test this model, we purified and reconstituted the Mps2-Bbp1 complex from yeast and incorporated the complex into liposomes. We also demonstrated that Mps2-Bbp1 directly interacts with Mps3 and Ndc1. We then purified Spc29 and reconstituted the ternary Mps2-Bbp1-Spc29 complex, proving that Bbp1 can simultaneously interact with Mps2 and Spc29 and in this way link the central plaque of the SPB to the nuclear envelope. Interestingly, Bbp1 induced oligomerization of Spc29, which may represent an early step in SPB duplication. Together, this analysis provides important insights into the interaction network that inserts the new SPB into the NE and indicates that the Mps2-Bbp1 complex is the central unit of the SPB membrane anchor.

摘要

在出芽酵母中(e),多层纺锤体极体(SPB)嵌入在内核膜与外核膜融合位点处的核膜(NE)中。SPB由18种不同的蛋白质组成,包括三种整合膜蛋白Mps3、Ndc1和Mps2。这些膜蛋白在将新的SPB插入核膜中起着至关重要的作用。到目前为止,SPB的巨大核心结构如何锚定在核膜中尚未得到充分研究。目前的模型表明,核膜蛋白Mps2通过Bbp1与Spc29相互作用,Spc29是形成SPB中央斑的卷曲螺旋蛋白之一。为了验证该模型,我们从酵母中纯化并重组了Mps2 - Bbp1复合物,并将该复合物整合到脂质体中。我们还证明了Mps2 - Bbp1直接与Mps3和Ndc1相互作用。然后我们纯化了Spc29并重组了三元Mps2 - Bbp1 - Spc29复合物,证明Bbp1可以同时与Mps2和Spc29相互作用,从而将SPB的中央斑与核膜连接起来。有趣的是,Bbp1诱导了Spc29的寡聚化,这可能代表了SPB复制的早期步骤。总之,该分析为将新的SPB插入核膜的相互作用网络提供了重要见解,并表明Mps2 - Bbp1复合物是SPB膜锚定的核心单元。

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本文引用的文献

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Duplication of the Yeast Spindle Pole Body Once per Cell Cycle.酵母纺锤体极体在每个细胞周期复制一次。
Mol Cell Biol. 2016 Apr 15;36(9):1324-31. doi: 10.1128/MCB.00048-16. Print 2016 May.
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Spindle pole bodies.纺锤极体
Curr Biol. 2013 Oct 7;23(19):R858-60. doi: 10.1016/j.cub.2013.07.024.
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Overexpression and purification of integral membrane proteins in yeast.酵母中整合膜蛋白的过表达与纯化
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