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Rapid degradation of mutant SLC25A46 by the ubiquitin-proteasome system results in MFN1/2-mediated hyperfusion of mitochondria

机译:泛素-蛋白酶体系统快速降解突变体SLC25A46导致MFN1 / 2介导的线粒体过度融合

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摘要

SCL25A46 is a mitochondrial carrier protein that surprisingly localizes to the outer membrane and is distantly related to Ugo1. Here we show that a subset of SLC25A46 interacts with mitochondrial dynamics components and the MICOS complex. Decreased expression of SLC25A46 results in increased stability and oligomerization of MFN1 and MFN2 on mitochondria, promoting mitochondrial hyperfusion. A mutation at L341P causes rapid degradation of SLC25A46, which manifests as a rare disease, pontocerebellar hypoplasia. The E3 ubiquitin ligases MULAN and MARCH5 coordinate ubiquitylation of SLC25A46 L341P, leading to degradation by organized activities of P97 and the proteasome. Whereas outer mitochondrial membrane–associated degradation is typically associated with apoptosis or a specialized type of autophagy termed mitophagy, SLC25A46 degradation operates independently of activation of outer membrane stress pathways. Thus SLC25A46 is a new component in mitochondrial dynamics that serves as a regulator for MFN1/2 oligomerization. Moreover, SLC25A46 is selectively degraded from the outer membrane independently of mitophagy and apoptosis, providing a framework for mechanistic studies in the proteolysis of outer membrane proteins.
机译:SCL25A46是一种线粒体载体蛋白,出奇地位于外膜,与Ugo1远缘相关。在这里,我们显示SLC25A46的一个子集与线粒体动力学组件和MICOS复合体相互作用。 SLC25A46的表达降低导致线粒体上MFN1和MFN2的稳定性增加和寡聚,从而促进了线粒体的过度融合。 L341P处的突变导致SLC25A46迅速降解,这表现为罕见的疾病,小脑小脑发育不全。 E3泛素连接酶MULAN和MARCH5协调SLC25A46 L341P的泛素化,导致P97和蛋白酶体的有组织活动导致降解。尽管线粒体外膜相关的降解通常与细胞凋亡或称为自噬的特殊类型的自噬有关,但SLC25A46降解的运作与外膜应激途径的激活无关。因此,SLC25A46是线粒体动力学的新组成部分,可作为MFN1 / 2寡聚化的调节剂。此外,SLC25A46可以独立于线粒体和细胞凋亡从外膜中选择性降解,为外膜蛋白的蛋白水解机理研究提供了框架。

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