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Interaction of the J-Protein Heterodimer Pam18/Pam16 of the Mitochondrial Import Motor with the Translocon of the Inner Membrane

机译:线粒体导入马达的J蛋白异二聚体Pam18 / Pam16与内膜的Translocon的相互作用

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摘要

Import of proteins across the inner mitochondrial membrane through the Tim23:Tim17 translocase requires the function of an essential import motor having mitochondrial 70-kDa heat-shock protein (mtHsp70) at its core. The heterodimer composed of Pam18, the J-protein partner of mtHsp70, and the related protein Pam16 is a critical component of this motor. We report that three interactions contribute to association of the heterodimer with the translocon: the N terminus of Pam16 with the matrix side of the translocon, the inner membrane space domain of Pam18 (Pam18IMS) with Tim17, and the direct interaction of the J-domain of Pam18 with the J-like domain of Pam16. Pam16 plays a major role in translocon association, as alterations affecting the stability of the Pam18:Pam16 heterodimer dramatically affect association of Pam18, but not Pam16, with the translocon. Suppressors of the growth defects caused by alterations in the N terminus of Pam16 were isolated and found to be due to mutations in a short segment of TIM44, the gene encoding the peripheral membrane protein that tethers mtHsp70 to the translocon. These data suggest a model in which Tim44 serves as a scaffold for precise positioning of mtHsp70 and its cochaperone Pam18 at the translocon.
机译:通过Tim23:Tim17转位酶跨线粒体内膜蛋白的导入需要具有核心为线粒体70 kDa热休克蛋白(mtHsp70)的基本导入马达的功能。由mtHsp70的J蛋白伴侣Pam18和相关蛋白Pam16组成的异二聚体是该马达的关键组成部分。我们报告三个相互作用有助于异二聚体与translocon的关联:Pam16的N端与translocon的基质侧,Pam18的内膜空间结构域(Pam18IMS)与Tim17以及J结构域的直接相互作用具有Pam16的J样结构域的Pam18。 Pam16在translocon关联中起主要作用,因为影响Pam18:Pam16异二聚体稳定性的改变会极大地影响Pam18,而不是Pam16与该Translocon的关联。分离了由Pam16的N末端改变引起的生长缺陷的抑制因子,发现这些抑制因子是由于TIM44的短片段发生突变而引起的,该片段编码将mtHsp70束缚于translocon的外周膜蛋白。这些数据提示了一个模型,其中Tim44用作支架,用于将mtHsp70及其辅酶伴侣Pam18精确定位在转位子上。

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