Tamura Yasushi, Endo Toshiya, Iijima Miho, Sesaki Hiromi
Department of Cell Biology, The Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.
J Cell Biol. 2009 Jun 15;185(6):1029-45. doi: 10.1083/jcb.200812018. Epub 2009 Jun 8.
Cardiolipin, a unique phospholipid composed of four fatty acid chains, is located mainly in the mitochondrial inner membrane (IM). Cardiolipin is required for the integrity of several protein complexes in the IM, including the TIM23 translocase, a dynamic complex which mediates protein import into the mitochondria through interactions with the import motor presequence translocase-associated motor (PAM). In this study, we report that two homologous intermembrane space proteins, Ups1p and Ups2p, control cardiolipin metabolism and affect the assembly state of TIM23 and its association with PAM in an opposing manner. In ups1Delta mitochondria, cardiolipin levels were decreased, and the TIM23 translocase showed altered conformation and decreased association with PAM, leading to defects in mitochondrial protein import. Strikingly, loss of Ups2p restored normal cardiolipin levels and rescued TIM23 defects in ups1Delta mitochondria. Furthermore, we observed synthetic growth defects in ups mutants in combination with loss of Pam17p, which controls the integrity of PAM. Our findings provide a novel molecular mechanism for the regulation of cardiolipin metabolism.
心磷脂是一种由四条脂肪酸链组成的独特磷脂,主要位于线粒体内膜(IM)。心磷脂对于线粒体内膜中几种蛋白质复合物的完整性是必需的,包括TIM23转位酶,这是一种动态复合物,通过与导入马达前序列转位酶相关马达(PAM)相互作用介导蛋白质导入线粒体。在本研究中,我们报道了两个同源的膜间隙蛋白Ups1p和Ups2p,以相反的方式控制心磷脂代谢并影响TIM23的组装状态及其与PAM的结合。在缺失Ups1p的线粒体中,心磷脂水平降低,TIM23转位酶显示构象改变且与PAM的结合减少,导致线粒体蛋白质导入缺陷。令人惊讶的是,缺失Ups2p可恢复正常的心磷脂水平并挽救缺失Ups1p的线粒体中的TIM23缺陷。此外,我们观察到Ups突变体与控制PAM完整性的Pam17p缺失相结合时出现合成生长缺陷。我们的发现为心磷脂代谢的调节提供了一种新的分子机制。