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直接结合 ESCRT 蛋白 Chm7 到富含磷酸脂的核膜突起处的膜上。

Direct binding of ESCRT protein Chm7 to phosphatidic acid-rich membranes at nuclear envelope herniations.

机构信息

Department of Cell Biology, Yale School of Medicine, New Haven, CT.

Centre for Chemical Biology, Department of Chemistry, Krebs Institute, University of Sheffield, Brook Hill, Sheffield, UK.

出版信息

J Cell Biol. 2021 Mar 1;220(3). doi: 10.1083/jcb.202004222.

Abstract

Mechanisms that control nuclear membrane remodeling are essential to maintain the integrity of the nucleus but remain to be fully defined. Here, we identify a phosphatidic acid (PA)-binding capacity in the nuclear envelope (NE)-specific ESCRT, Chm7, in budding yeast. Chm7's interaction with PA-rich membranes is mediated through a conserved hydrophobic stretch of amino acids, which confers recruitment to the NE in a manner that is independent of but required for Chm7's interaction with the LAP2-emerin-MAN1 (LEM) domain protein Heh1 (LEM2). Consistent with the functional importance of PA binding, mutation of this region abrogates recruitment of Chm7 to membranes and abolishes Chm7 function in the context of NE herniations that form during defective nuclear pore complex (NPC) biogenesis. In fact, we show that a PA sensor specifically accumulates within these NE herniations. We suggest that local control of PA metabolism is important for ensuring productive NE remodeling and that its dysregulation may contribute to pathologies associated with defective NPC assembly.

摘要

控制核膜重塑的机制对于维持细胞核的完整性至关重要,但仍有待充分定义。在这里,我们在芽殖酵母的核膜(NE)特异性 ESCRT 中鉴定出一种含有磷酸酸(PA)的结合能力。Chm7 与富含 PA 的膜的相互作用是通过保守的疏水性氨基酸延伸介导的,该延伸以独立于但需要 Chm7 与 LAP2-emerin-MAN1(LEM)域蛋白 Heh1(LEM2)相互作用的方式赋予了向 NE 的募集。与 PA 结合的功能重要性一致,该区域的突变会破坏 Chm7 与膜的募集,并在 NPC 生物发生缺陷期间形成的 NE 隆起的情况下消除 Chm7 的功能。事实上,我们表明,一种特定的 PA 传感器在这些 NE 隆起中积累。我们认为,PA 代谢的局部控制对于确保有效的 NE 重塑很重要,其失调可能导致与 NPC 组装缺陷相关的病理学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d65/7816628/f81ce6072d45/JCB_202004222_Fig1.jpg

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