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Fzo1寡聚体中的结构域相互作用对于线粒体融合至关重要。

Domain interactions within Fzo1 oligomers are essential for mitochondrial fusion.

作者信息

Griffin Erik E, Chan David C

机构信息

Division of Biology, California Institute of Technology, 1200 E. California Boulevard, Pasadena, CA 91125, USA.

出版信息

J Biol Chem. 2006 Jun 16;281(24):16599-606. doi: 10.1074/jbc.M601847200. Epub 2006 Apr 19.

Abstract

Mitofusins are conserved GTPases essential for the fusion of mitochondria. These mitochondrial outer membrane proteins contain a GTPase domain and two or three regions with hydrophobic heptad repeats, but little is known about how these domains interact to mediate mitochondrial fusion. To address this issue, we have analyzed the yeast mitofusin Fzo1p and find that mutation of any of the three heptad repeat regions (HRN, HR1, and HR2) leads to a null allele. Specific pairs of null alleles show robust complementation, indicating that functional domains need not exist on the same molecule. Biochemical analysis indicates that this complementation is due to Fzo1p oligomerization mediated by multiple domain interactions. Moreover, we find that two non-overlapping protein fragments, one consisting of HRN/GTPase and the other consisting of HR1/HR2, can form a complex that reconstitutes Fzo1p fusion activity. Each of the null alleles disrupts the interaction of these two fragments, suggesting that we have identified a key interaction involving the GTPase domain and heptad repeats essential for fusion.

摘要

线粒体融合蛋白是线粒体融合所必需的保守GTP酶。这些线粒体外膜蛋白包含一个GTP酶结构域和两个或三个具有疏水七肽重复序列的区域,但对于这些结构域如何相互作用以介导线粒体融合却知之甚少。为了解决这个问题,我们分析了酵母线粒体融合蛋白Fzo1p,发现三个七肽重复区域(HRN、HR1和HR2)中的任何一个发生突变都会导致无效等位基因。特定的无效等位基因对显示出强大的互补作用,这表明功能结构域不一定存在于同一个分子上。生化分析表明,这种互补作用是由于多个结构域相互作用介导的Fzo1p寡聚化。此外,我们发现两个不重叠的蛋白质片段,一个由HRN/GTP酶组成,另一个由HR1/HR2组成,可以形成一个复合体,该复合体可重构Fzo1p的融合活性。每个无效等位基因都会破坏这两个片段之间的相互作用,这表明我们已经确定了一种关键的相互作用,涉及GTP酶结构域和七肽重复序列,这对于融合至关重要。

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