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OPA1 processing reconstituted in yeast depends on the subunit composition of the m-AAA protease in mitochondria

机译:酵母中重构的OPA1加工取决于线粒体中m-AAA蛋白酶的亚基组成

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摘要

The morphology of mitochondria in mammalian cells is regulated by proteolytic cleavage of OPA1, a dynamin-like GTPase of the mitochondrial inner membrane. The mitochondrial rhomboid protease PARL, and paraplegin, a subunit of the ATP-dependent m-AAA protease, were proposed to be involved in this process. Here, we characterized individual OPA1 isoforms by mass spectrometry, and we reconstituted their processing in yeast to identify proteases involved in OPA1 cleavage. The yeast homologue of OPA1, Mgm1, was processed both by PARL and its yeast homologue Pcp1. Neither of these rhomboid proteases cleaved OPA1. The formation of small OPA1 isoforms was impaired in yeast cells lacking the m-AAA protease subunits Yta10 and Yta12 and was restored upon expression of murine or human m-AAA proteases. OPA1 processing depended on the subunit composition of mammalian m-AAA proteases. Homo-oligomeric m-AAA protease complexes composed of murine Afg3l1, Afg3l2, or human AFG3L2 subunits cleaved OPA1 with higher efficiency than paraplegin-containing m-AAA proteases. OPA1 processing proceeded normally in murine cell lines lacking paraplegin or PARL. Our results provide evidence for different substrate specificities of m-AAA proteases composed of different subunits and reveal a striking evolutionary switch of proteases involved in the proteolytic processing of dynamin-like GTPases in mitochondria.
机译:哺乳动物细胞中线粒体的形态受蛋白水解切割OPA1的调节,OPA1是线粒体内膜的一种类似动力的GTP酶。线粒体菱形蛋白酶PARL和截瘫是ATP依赖的m-AAA蛋白酶的一个亚基,被提议参与此过程。在这里,我们通过质谱表征了单个OPA1同工型,并在酵母中重构了它们的加工过程,以鉴定参与OPA1裂解的蛋白酶。 OPA1的酵母同源物Mgm1由PARL及其酵母同源物Pcp1进行了处理。这些菱形蛋白酶均未裂解OPA1。在缺少m-AAA蛋白酶亚基Yta10和Yta12的酵母细胞中,小的OPA1同工型的形成受到损害,并在表达鼠或人m-AAA蛋白酶后得以恢复。 OPA1加工取决于哺乳动物m-AAA蛋白酶的亚基组成。由鼠Afg3l1,Afg3l2或人AFG3L2亚基组成的同源寡聚m-AAA蛋白酶复合物比含截短链霉菌的m-AAA蛋白酶裂解OPA1的效率更高。 OPA1处理在缺乏截瘫或PARL的鼠细胞系中正常进行。我们的结果为由不同亚基组成的m-AAA蛋白酶的不同底物特异性提供了证据,并揭示了线粒体中类似动力蛋白的GTPases的蛋白水解过程中涉及的蛋白酶的惊人进化开关。

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