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Protein N-terminal Acetylation by the NatA Complex Is Critical for Selective Mitochondrial Degradation

机译:NatA复合物的蛋白质N末端乙酰化对于选择性线粒体降解至关重要

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摘要

Mitophagy is an evolutionarily conserved autophagy pathway that selectively degrades mitochondria. Although it is well established that this degradation system contributes to mitochondrial quality and quantity control, mechanisms underlying mitophagy remain largely unknown. Here, we report that protein N-terminal acetyltransferase A (NatA), an enzymatic complex composed of the catalytic subunit Ard1 and the adaptor subunit Nat1, is crucial for mitophagy in yeast. NatA is associated with the ribosome via Nat1 and acetylates the second amino acid residues of nascent polypeptides. Mitophagy, but not bulk autophagy, is strongly suppressed in cells lacking Ard1, Nat1, or both proteins. In addition, loss of NatA enzymatic activity causes impairment of mitochondrial degradation, suggesting that protein N-terminal acetylation by NatA is important for mitophagy. Ard1 and Nat1 mutants exhibited defects in induction of Atg32, a protein essential for mitophagy, and formation of mitochondria-specific autophagosomes. Notably, overexpression of Atg32 partially recovered mitophagy in NatA-null cells, implying that this acetyltransferase participates in mitophagy at least in part via Atg32 induction. Together, our data implicate NatA-mediated protein modification as an early regulatory step crucial for efficient mitophagy.
机译:线粒体吞噬是一种进化保守的自噬途径,可选择性降解线粒体。尽管已经确定该降解系统有助于线粒体的质量和数量控制,但线粒体潜在的机制仍然未知。在这里,我们报告蛋白质N末端乙酰转移酶A(NatA),由催化亚基Ard1和适配器亚基Nat1组成的酶复合物,对于酵母中的噬菌体至关重要。 NatA通过Nat1与核糖体缔合,并乙酰化新生多肽的第二个氨基酸残基。在缺乏Ard1,Nat1或这两种蛋白质的细胞中,线粒体吞噬(但不是整体自噬)受到强烈抑制。此外,NatA酶活性的丧失会导致线粒体降解受损,这表明NatA引起的蛋白质N端乙酰化对于线粒体摄取很重要。 Ard1和Nat1突变体在诱导Atg32(线粒体必需的蛋白质)和线粒体特异的自噬体形成过程中表现出缺陷。值得注意的是,Atg32的过表达部分还原了NatA-null细胞中的线粒体,这表明该乙酰转移酶至少部分通过Atg32诱导参与线粒体。总之,我们的数据表明,NatA介导的蛋白质修饰是对有效线粒体至关重要的早期调控步骤。

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