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A Highlights from MBoC Selection: Reevaluation of the role of the Pam18:Pam16 interaction in translocation of proteins by the mitochondrial Hsp70-based import motor

机译:MBoC选择的亮点:通过基于Hsp70的线粒体导入马达重新评估Pam18:Pam16相互作用在蛋白质移位中的作用

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摘要

The heat-shock protein 70 (Hsp70)–based import motor, associated with the translocon on the matrix side of the mitochondrial inner membrane, drives translocation of proteins via cycles of binding and release. Stimulation of Hsp70's ATPase activity by the translocon-associated J-protein Pam18 is critical for this process. Pam18 forms a heterodimer with the structurally related protein Pam16, via their J-type domains. This interaction has been proposed to perform a critical regulatory function, inhibiting the ATPase stimulatory activity of Pam18. Using biochemical and genetic assays, we tested this hypothesis by assessing the in vivo function of Pam18 variants having altered abilities to stimulate Hsp70's ATPase activity. The observed pattern of genetic interactions was opposite from that predicted if the heterodimer serves an inhibitory function; instead the pattern was consistent with that of mutations known to cause reduction in the stability of the heterodimer. Analysis of a previously uncharacterized region of Pam16 revealed its requirement for formation of an active Pam18:Pam16 complex able to stimulate Hsp70's ATPase activity. Together, our data are consistent with the idea that Pam18 and Pam16 form a stable heterodimer and that the critical role of the Pam18:Pam16 interaction is the physical tethering of Pam18 to the translocon via its interaction with Pam16.
机译:基于热休克蛋白70(Hsp70)的输入马达,与线粒体内膜基质侧的translocon相关,通过结合和释放的循环驱动蛋白的转运。转运相关的J蛋白Pam18刺激Hsp70的ATP酶活性对于该过程至关重要。 Pam18通过其J型结构域与结构相关蛋白Pam16形成异源二聚体。已经提出这种相互作用以执行关键的调节功能,抑制Pam18的ATP酶刺激活性。使用生化和遗传测定,我们通过评估Pam18变体的体内功能来验证这一假设,该变体具有改变刺激Hsp70的ATPase活性的能力。如果异二聚体发挥抑制作用,则观察到的遗传相互作用模式与预测的相反。相反,该模式与已知导致异二聚体稳定性降低的突变的模式一致。对以前未鉴定的Pam16区域的分析显示,其需要形成能够刺激Hsp70的ATPase活性的活性Pam18:Pam16复合物。总之,我们的数据与以下观点一致:Pam18和Pam16形成稳定的异二聚体,并且Pam18:Pam16相互作用的关键作用是通过与Pam18相互作用将Pam18物理拴系在转座子上。

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