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Fast kinase domain-containing protein 3 is a mitochondrial protein essential for cellular respiration.

机译:含快速激酶结构域的蛋白质3是细胞呼吸所必需的线粒体蛋白质。

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摘要

Fas-activated serine/threonine phosphoprotein (FAST) is the founding member of the FAST kinase domain-containing protein (FASTKD) family that includes FASTKD1-5. FAST is a sensor of mitochondrial stress that modulates protein translation to promote the survival of cells exposed to adverse conditions. Mutations in FASTKD2 have been linked to a mitochondrial encephalomyopathy that is associated with reduced cytochrome c oxidase activity, an essential component of the mitochondrial electron transport chain. We have confirmed the mitochondrial localization of FASTKD2 and shown that all FASTKD family members are found in mitochondria. Although human and mouse FASTKD1-5 genes are expressed ubiquitously, some of them are most abundantly expressed in mitochondria-enriched tissues. We have found that RNA interference-mediated knockdown of FASTKD3 severely blunts basal and stress-induced mitochondrial oxygen consumption without disrupting the assembly of respiratory chain complexes. Tandem affinity purification reveals that FASTKD3 interacts with components of mitochondrial respiratory and translation machineries. Our results introduce FASTKD3 as an essential component of mitochondrial respiration that may modulate energy balance in cells exposed to adverse conditions by functionally coupling mitochondrial protein synthesis to respiration.
机译:Fas激活的丝氨酸/苏氨酸磷酸蛋白(FAST)是包含FASTKD1-5的FAST激酶域蛋白(FASTKD)家族的创始成员。 FAST是线粒体应激的传感器,可调节蛋白质翻译以促进暴露于不利条件下的细胞的存活。 FASTKD2中的突变已与线粒体脑肌病相关,线粒体脑肌病与细胞色素c氧化酶活性降低有关,后者是线粒体电子运输链的重要组成部分。我们已经证实FASTKD2的线粒体定位,并表明所有FASTKD家族成员都存在于线粒体中。尽管人类和小鼠的FASTKD1-5基因普遍表达,但其中一些在线粒体富集的组织中表达最丰富。我们已经发现,RNA干扰介导的FASTKD3敲低会严重钝化基础和应激诱导的线粒体耗氧量,而不会破坏呼吸链复合物的装配。串联亲和纯化揭示FASTKD3与线粒体呼吸和翻译机器的成分相互作用。我们的研究结果表明FASTKD3是线粒体呼吸的重要组成部分,它可能通过功能性地将线粒体蛋白质合成与呼吸功能耦合,从而调节暴露于不利条件的细胞中的能量平衡。

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