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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Genetic Analysis of Complex Interactions Among Components of the Mitochondrial Import Motor and Translocon in Saccharomyces cerevisiae
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Genetic Analysis of Complex Interactions Among Components of the Mitochondrial Import Motor and Translocon in Saccharomyces cerevisiae

机译:酿酒酵母中线粒体输入马达和translocon的复杂相互作用的遗传分析。

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摘要

A highly conserved, Hsp70-based, import motor, which is associated with the translocase on the matrix side of the inner mitochondrial membrane, is critical for protein translocation into the matrix. Hsp70 is tethered to the translocon via interaction with Tim44. Pam18, the J-protein co-chaperone, and Pam16, a structurally related protein with which Pam18 forms a heterodimer, are also critical components of the motor. Their N termini are important for the heterodimer's translocon association, with Pam18's and Pam16's N termini interacting in the intermembrane space and the matrix, respectively. Here, using the model organism Saccharomyces cerevisiae, we report the identification of an N-terminal segment of Tim44, important for association of Pam16 with the translocon. We also report that higher amounts of Pam17, a nonessential motor component, are found associated with the translocon in both PAM16 and TIM44 mutants that affect their interaction with one another. These TIM44 and PAM16 mutations are also synthetically lethal with a deletion of PAM17. In contrast, a deletion of PAM17 has little, or no genetic interaction with a PAM18 mutation that affects translocon association of the Pam16: Pam18 heterodimer, suggesting a second role for the Pam16: Tim44 interaction. A similar pattern of genetic interactions and enhanced Pam17 translocon association was observed in the absence of the C terminus of Tim17, a core component of the translocon. We suggest the Pam16: Tim44 interaction may play two roles: (1) tethering the Pam16: Pam18 heterodimer to the translocon and (2) positioning the import motor for efficient engagement with the translocating polypeptide along with Tim17 and Pam17.
机译:高度保守的,基于Hsp70的导入马达与线粒体内膜基质侧的转位酶相关,对于蛋白质易位到基质中至关重要。 Hsp70通过与Tim44的相互作用而被束缚在转位子上。 Pam18(J蛋白的伴侣蛋白)和Pam16(一种与结构相关的蛋白,与Pam18形成异二聚体)也是马达的关键组成部分。它们的N末端对于异二聚体的Translocon缔合非常重要,Pam18和Pam16的N末端分别在膜间空间和基质中相互作用。在这里,我们使用模型生物酿酒酵母,我们报告了Tim44的N末端片段的鉴定,这对Pam16与translocon的关联很重要。我们还报告说,在PAM16和TIM44突变体中都发现与translocon相关的更高数量的Pam17(一种非必要的运动成分)会影响彼此之间的相互作用。这些TIM44和PAM16突变在缺失PAM17的情况下也具有致命的致命性。相比之下,PAM17的缺失与影响Pam16:Pam18异源二聚体的translocon缔合的PAM18突变几乎没有基因相互作用,或没有遗传相互作用,表明Pam16:Tim44相互作用的第二个作用。在缺少Tim17的C末端(translocon的核心组件)的情况下,观察到了相似的遗传相互作用模式和增强的Pam17 translocon关联。我们建议Pam16:Tim44相互作用可能起两个作用:(1)将Pam16:Pam18异二聚体束缚在转位子上;(2)定位导入马达,以便与Tim17和Pam17一起有效地与易位多肽结合。

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