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酵母 Tim22 的保守区域在载体易位子的结构组织中发挥作用。

Conserved regions of budding yeast Tim22 have a role in structural organization of the carrier translocase.

机构信息

Department of Biochemistry, New Biological Sciences Building, Indian Institute of Science, C V Raman Avenue, Bangalore 560012, India.

Department of Biochemistry, New Biological Sciences Building, Indian Institute of Science, C V Raman Avenue, Bangalore 560012, India

出版信息

J Cell Sci. 2020 Jul 29;133(14):jcs244632. doi: 10.1242/jcs.244632.

Abstract

Mitochondrial biogenesis requires efficient sorting of various proteins into different mitochondrial sub-compartments, mediated by dedicated protein machinery present in the outer and inner membrane. Among them, the TIM22 complex enables the integration of complex membrane proteins with internal targeting signals into the inner membrane. Although the Tim22 protein forms the core of the complex, the dynamic recruitment of subunits to the channel is still enigmatic. In this study, we highlight that the intermembrane space (IMS) and transmembrane 4 (TM4) regions of Tim22 are critically required for interactions with the membrane-embedded subunits, including Tim54, Tim18, and Sdh3, and thereby maintain the functional architecture of the TIM22 translocase. Furthermore, we find that the TM1 and TM2 regions of Tim22 are important for association with Tim18, whereas TM3 is exclusively required for the interaction with Sdh3. Moreover, impairment of TIM22 complex assembly influences its translocase activity, the mitochondrial network, and the viability of cells lacking mitochondrial DNA. Overall, our findings provide compelling evidence highlighting the significance of conserved regions of Tim22 that are important for the maintenance of the TIM22 complex and mitochondrial integrity.

摘要

线粒体生物发生需要各种蛋白质有效地分拣到不同的线粒体亚区室中,这是由外膜和内膜中存在的专用蛋白质机器介导的。其中,TIM22 复合物使具有内部靶向信号的膜蛋白整合到内膜中。尽管 Tim22 蛋白构成了该复合物的核心,但亚基向通道的动态募集仍然是一个谜。在这项研究中,我们强调 Tim22 的膜间空间 (IMS) 和跨膜 4 (TM4) 区域对于与膜嵌入亚基(包括 Tim54、Tim18 和 Sdh3)的相互作用至关重要,并维持 TIM22 转运体的功能结构。此外,我们发现 Tim22 的 TM1 和 TM2 区域对于与 Tim18 的结合很重要,而 TM3 仅对于与 Sdh3 的相互作用是必需的。此外,TIM22 复合物组装的损伤会影响其转运体活性、线粒体网络以及缺乏线粒体 DNA 的细胞的存活能力。总的来说,我们的发现提供了令人信服的证据,强调了 Tim22 的保守区域对于维持 TIM22 复合物和线粒体完整性的重要性。

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