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酿酒酵母纺锤体极体的完整性和功能依赖于膜蛋白 Ndc1、Rtn1 和 Yop1 之间的连接。

Integrity and function of the Saccharomyces cerevisiae spindle pole body depends on connections between the membrane proteins Ndc1, Rtn1, and Yop1.

机构信息

Department of Cell and Developmental Biology, Vanderbilt University School of Medicine, Nashville, TN 37232, USA.

出版信息

Genetics. 2012 Oct;192(2):441-55. doi: 10.1534/genetics.112.141465. Epub 2012 Jul 13.

Abstract

The nuclear envelope in Saccharomyces cerevisiae harbors two essential macromolecular protein assemblies: the nuclear pore complexes (NPCs) that enable nucleocytoplasmic transport, and the spindle pole bodies (SPBs) that mediate chromosome segregation. Previously, based on metazoan and budding yeast studies, we reported that reticulons and Yop1/DP1 play a role in the early steps of de novo NPC assembly. Here, we examined if Rtn1 and Yop1 are required for SPB function in S. cerevisiae. Electron microscopy of rtn1Δ yop1Δ cells revealed lobular abnormalities in SPB structure. Using an assay that monitors lateral expansion of the SPB central layer, we found that rtn1Δ yop1Δ SPBs had decreased connections to the NE compared to wild type, suggesting that SPBs are less stable in the NE. Furthermore, large budded rtn1Δ yop1Δ cells exhibited a high incidence of short mitotic spindles, which were frequently misoriented with respect to the mother-daughter axis. This correlated with cytoplasmic microtubule defects. We found that overexpression of the SPB insertion factors NDC1, MPS2, or BBP1 rescued the SPB defects observed in rtn1Δ yop1Δ cells. However, only overexpression of NDC1, which is also required for NPC biogenesis, rescued both the SPB and NPC associated defects. Rtn1 and Yop1 also physically interacted with Ndc1 and other NPC membrane proteins. We propose that NPC and SPB biogenesis are altered in cells lacking Rtn1 and Yop1 due to competition between these complexes for Ndc1, an essential common component of both NPCs and SPBs.

摘要

酿酒酵母的核被膜含有两个必需的大型蛋白质组装体

核孔复合物(NPCs),其可实现核质转运;以及纺锤体极体(SPBs),其介导染色体分离。此前,基于后生动物和芽殖酵母的研究,我们报告了网蛋白和 Yop1/DP1 在从头组装新的 NPC 早期步骤中发挥作用。在这里,我们研究了 Rtn1 和 Yop1 是否是酿酒酵母 SPB 功能所必需的。rtn1Δ yop1Δ 细胞的电子显微镜显示 SPB 结构的小叶异常。使用监测 SPB 中央层侧向扩展的测定法,我们发现 rtn1Δ yop1Δ SPB 与野生型相比与 NE 的连接减少,这表明 SPB 在 NE 中不太稳定。此外,大芽殖的 rtn1Δ yop1Δ 细胞表现出短有丝分裂纺锤体的高发生率,这些纺锤体经常相对于母-子轴发生错误取向。这与细胞质微管缺陷相关。我们发现 SPB 插入因子 NDC1、MPS2 或 BBP1 的过表达可挽救 rtn1Δ yop1Δ 细胞中观察到的 SPB 缺陷。然而,仅 NPC 生物发生也需要的 NDC1 的过表达可挽救 SPB 和 NPC 相关缺陷。Rtn1 和 Yop1 还与 Ndc1 和其他 NPC 膜蛋白物理相互作用。我们提出,由于这些复合物之间对 Ndc1 的竞争,在缺乏 Rtn1 和 Yop1 的细胞中 NPC 和 SPB 的生物发生会发生改变,Ndc1 是 NPC 和 SPB 的必需共同成分。

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本文引用的文献

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Mitotic spindle form and function.有丝分裂纺锤体的形成和功能。
Genetics. 2012 Apr;190(4):1197-224. doi: 10.1534/genetics.111.128710.
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Nuclear pore complexes: guardians of the nuclear genome.核孔复合体:核基因组的守护者。
Cold Spring Harb Symp Quant Biol. 2010;75:585-97. doi: 10.1101/sqb.2010.75.059. Epub 2011 Apr 18.
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The mechanism of nucleocytoplasmic transport through the nuclear pore complex.通过核孔复合体进行核质运输的机制。
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