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The Cbp3–Cbp6 complex coordinates cytochrome b synthesis with bc1 complex assembly in yeast mitochondria

机译:Cbp3-Cbp6复合物在酵母线粒体中协调细胞色素b的合成与bc1复合物的装配

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摘要

Respiratory chain complexes in mitochondria are assembled from subunits derived from two genetic systems. For example, the bc1 complex consists of nine nuclear encoded subunits and the mitochondrially encoded subunit cytochrome b. We recently showed that the Cbp3–Cbp6 complex has a dual function for biogenesis of cytochrome b: it is both required for efficient synthesis of cytochrome b and for protection of the newly synthesized protein from proteolysis. Here, we report that Cbp3–Cbp6 also coordinates cytochrome b synthesis with bc1 complex assembly. We show that newly synthesized cytochrome b assembled through a series of four assembly intermediates. Blocking assembly at early and intermediate steps resulted in sequestration of Cbp3–Cbp6 in a cytochrome b–containing complex, thereby making Cbp3–Cbp6 unavailable for cytochrome b synthesis and thus reducing overall cytochrome b levels. This feedback loop regulates protein synthesis at the inner mitochondrial membrane by directly monitoring the efficiency of bc1 complex assembly.
机译:线粒体中的呼吸链复合物由两个遗传系统衍生的亚基组装而成。例如,bc1复合体由9个核编码的亚基和线粒体编码的亚基细胞色素b组成。我们最近发现,Cbp3-Cbp6复合物对于细胞色素b的生物发生具有双重功能:有效合成细胞色素b和保护新合成的蛋白质不受蛋白水解作用都是必需的。在这里,我们报道了Cbp3-Cbp6还与bc1复合物装配体协调了细胞色素b的合成。我们显示,新合成的细胞色素b通过一系列四个组装中间体组装而成。在早期和中间步骤中的组装阻滞导致将Cbp3-Cbp6螯合在含有细胞色素b的复合物中,从而使Cbp3-Cbp6无法用于细胞色素b的合成,从而降低了细胞色素b的总体水平。该反馈回路通过直接监测bc1复合体装配的效率来调节线粒体内膜的蛋白质合成。

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