MRC-Mitochondrial Biology Unit, Wellcome Trust-MRC Building, Hills Road Cambridge, CB2 0XY, UK.
Nucleic Acids Res. 2012 Jul;40(13):6097-108. doi: 10.1093/nar/gks257. Epub 2012 Mar 24.
The bacterial homologue of C4orf14, YqeH, has been linked to assembly of the small ribosomal subunit. Here, recombinant C4orf14 isolated from human cells, co-purified with the small, 28S subunit of the mitochondrial ribosome and the endogenous protein co-fractionated with the 28S subunit in sucrose gradients. Gene silencing of C4orf14 specifically affected components of the small subunit, leading to decreased protein synthesis in the organelle. The GTPase of C4orf14 was critical to its interaction with the 28S subunit, as was GTP. Therefore, we propose that C4orf14, with bound GTP, binds to components of the 28S subunit facilitating its assembly, and GTP hydrolysis acts as the release mechanism. C4orf14 was also found to be associated with human mitochondrial nucleoids, and C4orf14 gene silencing caused mitochondrial DNA depletion. In vitro C4orf14 is capable of binding to DNA. The association of C4orf14 with mitochondrial translation factors and the mitochondrial nucleoid suggests that the 28S subunit is assembled at the mitochondrial nucleoid, enabling the direct transfer of messenger RNA from the nucleoid to the ribosome in the organelle.
细菌同源物 C4orf14(YqeH)与小核糖体亚基的组装有关。在这里,从人细胞中分离出的重组 C4orf14 与线粒体核糖体的小 28S 亚基共纯化,并在内源蛋白与蔗糖梯度中的 28S 亚基共分馏。C4orf14 的基因沉默特异性影响小亚基的成分,导致细胞器中的蛋白质合成减少。C4orf14 的 GTPase 对于其与 28S 亚基的相互作用至关重要,GTP 也是如此。因此,我们提出 C4orf14 与结合的 GTP 结合到 28S 亚基的成分上,促进其组装,而 GTP 水解充当释放机制。还发现 C4orf14 与人类线粒体核仁体相关,C4orf14 基因沉默导致线粒体 DNA 耗竭。体外 C4orf14 能够与 DNA 结合。C4orf14 与线粒体翻译因子和线粒体核仁体的结合表明 28S 亚基在线粒体核仁体上组装,从而使信使 RNA 能够从核仁体直接转移到细胞器中的核糖体上。