蛋白质稳态
线粒体生物发生
细胞生物学
生物
DNAJA3公司
细胞器生物发生
线粒体
生物发生
线粒体膜转运蛋白
胞浆
转录因子
TFAM公司
热休克蛋白A9
ATP-ADP转位酶
线粒体DNA
线粒体融合
线粒体内膜
遗传学
生物化学
基因
肽序列
酶
作者
Qingqing Liu,Catherine E. Chang,Alexandra C Wooldredge,Benjamin Fong,Brian K. Kennedy,Chuankai Zhou
出处
期刊:eLife
[eLife Sciences Publications, Ltd.]
日期:2022-03-02
卷期号:11
被引量:18
摘要
Mitochondrial biogenesis has two major steps: the transcriptional activation of nuclear genome-encoded mitochondrial proteins and the import of nascent mitochondrial proteins that are synthesized in the cytosol. These nascent mitochondrial proteins are aggregation-prone and can cause cytosolic proteostasis stress. The transcription factor-dependent transcriptional regulations and the TOM-TIM complex-dependent import of nascent mitochondrial proteins have been extensively studied. Yet, little is known regarding how these two steps of mitochondrial biogenesis coordinate with each other to avoid the cytosolic accumulation of these aggregation-prone nascent mitochondrial proteins. Here, we show that in budding yeast, Tom70, a conserved receptor of the TOM complex, moonlights to regulate the transcriptional activity of mitochondrial proteins. Tom70's transcription regulatory role is conserved in Drosophila. The dual roles of Tom70 in both transcription/biogenesis and import of mitochondrial proteins allow the cells to accomplish mitochondrial biogenesis without compromising cytosolic proteostasis. The age-related reduction of Tom70, caused by reduced biogenesis and increased degradation of Tom70, is associated with the loss of mitochondrial membrane potential, mtDNA, and mitochondrial proteins. While loss of Tom70 accelerates aging and age-related mitochondrial defects, overexpressing TOM70 delays these mitochondrial dysfunctions and extends the replicative lifespan. Our results reveal unexpected roles of Tom70 in mitochondrial biogenesis and aging.
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