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The intramitochondrial dynamin-related GTPase Mgm1p is a component of a protein complex that mediates mitochondrial fusion

机译:线粒体内动力相关的GTPase Mgm1p是介导线粒体融合的蛋白质复合物的组成部分

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摘要

Abalance between fission and fusion events determines the morphology of mitochondria. In yeast, mitochondrial fission is regulated by the outer membrane–associated dynamin-related GTPase, Dnm1p. Mitochondrial fusion requires two integral outer membrane components, Fzo1p and Ugo1p. Interestingly, mutations in a second mitochondrial-associated dynamin-related GTPase, Mgm1p, produce similar phenotypes to fzo1 and ugo cells. Specifically, mutations in MGM1 cause mitochondrial fragmentation and a loss of mitochondrial DNA that are suppressed by abolishing DNM1-dependent fission. In contrast to fzo1 ts mutants, blocking DNM1-dependent fission restores mitochondrial fusion in mgm1 ts cells during mating. Here we show that blocking DNM1-dependent fission in Δmgm1 cells fails to restore mitochondrial fusion during mating. To examine the role of Mgm1p in mitochondrial fusion, we looked for molecular interactions with known fusion components. Immunoprecipitation experiments revealed that Mgm1p is associated with both Ugo1p and Fzo1p in mitochondria, and that Ugo1p and Fzo1p also are associated with each other. In addition, genetic analysis of specific mgm1 alleles indicates that Mgm1p's GTPase and GTPase effector domains are required for its ability to promote mitochondrial fusion and that Mgm1p self-interacts, suggesting that it functions in fusion as a self-assembling GTPase. Mgm1p's localization within mitochondria has been controversial. Using protease protection and immuno-EM, we have shown previously that Mgm1p localizes to the intermembrane space, associated with the inner membrane. To further test our conclusions, we have used a novel method using the tobacco etch virus protease and confirm that Mgm1p is present in the intermembrane space compartment in vivo. Taken together, these data suggest a model where Mgm1p functions in fusion to remodel the inner membrane and to connect the inner membrane to the outer membrane via its interactions with Ugo1p and Fzo1p, thereby helping to coordinate the behavior of the four mitochondrial membranes during fusion.
机译:裂变和融合事件之间的平衡决定了线粒体的形态。在酵母中,线粒体裂变受外膜相关的动力蛋白相关的GTPase Dnm1p调控。线粒体融合需要两个完整的外膜组件,Fzo1p和Ugo1p。有趣的是,第二个线粒体相关的动力蛋白相关的GTP酶Mgm1p中的突变产生与fzo1和ugo细胞相似的表型。具体来说,MGM1中的突变会导致线粒体片段化和线粒体DNA的丢失,这些废除可通过消除DNM1依赖性裂变来抑制。与fzo1 ts 突变体相反,阻断DNM1依赖性裂变可在交配期间恢复mgm1 ts 细胞中的线粒体融合。在这里,我们显示阻止Δmgm1细胞中依赖DNM1的裂变无法在交配过程中恢复线粒体融合。为了检查Mgm1p在线粒体融合中的作用,我们寻找了与已知融合成分的分子相互作用。免疫沉淀实验表明,Mgm1p与线粒体中的Ugo1p和Fzo1p相关,并且Ugo1p和Fzo1p也彼此相关。此外,对特定mgm1等位基因的遗传分析表明,Mgm1p的GTPase和GTPase效应子域是促进线粒体融合的能力所必需的,并且Mgm1p自相互作用,表明其在融合中的功能是自组装的GTPase。 Mgm1p在线粒体内的定位一直存在争议。使用蛋白酶保护和免疫EM,我们以前已经表明Mgm1p定位到与内膜相关的膜间空间。为了进一步检验我们的结论,我们使用了一种使用烟草蚀刻病毒蛋白酶的新颖方法,并确认Mgm1p存在于体内膜间空间。综上所述,这些数据提出了一个模型,其中Mgm1p在融合中起着重塑内膜的作用,并通过其与Ugo1p和Fzo1p的相互作用将内膜连接到外膜,从而有助于协调融合过程中四个线粒体膜的行为。

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