Maheshwari K K, Marzuki S
Biochim Biophys Acta. 1985 Apr 19;824(4):273-83. doi: 10.1016/0167-4781(85)90033-8.
The involvement of mitochondrial protein synthesis in the assembly of the mitochondrial ribosomes was investigated by studying the extent to which the assembly process can proceed in the presence of mitochondrial protein synthesis inhibitors erythromycin and chloramphenicol. Yeast cells grown in the presence of erythromycin (2 mg/ml) do not appear to contain any detectable amounts of the mitochondrial small (37 S) ribosomal subunit. Instead, a ribonucleoparticle with a sedimentation coefficient of 30 S was observed; this particle could be shown to be related to the mitochondrial small ribosomal subunit by two-dimensional gel electrophoretic analysis of its protein components. Since the var1 protein is the only mitochondrial translation product known to be associated with the mitochondrial ribosome, our results suggest that this protein is essential for the assembly of the mature small subunit, and that the var1 protein enters the pathway for the assembly of the small subunit at a late step. In at least one strain of yeast the accumulation of the 30-S particle appears to be very sensitive to catabolite repression. When yeast cells are grown in the presence of chloramphenicol instead of erythromycin, assembly of the small subunit appears to be only partially inhibited, and the presence of the 30-S particle could not be clearly demonstrated. This observation is consistent with the fact that in yeast, chloramphenicol inhibits mitochondrial protein synthesis by about 95% only and that the synthesis of the var1 protein appears to be the least sensitive to this inhibition.
通过研究线粒体蛋白合成抑制剂红霉素和氯霉素存在时线粒体核糖体装配过程的进展程度,对线粒体蛋白合成在线粒体核糖体装配中的参与情况进行了研究。在红霉素(2毫克/毫升)存在下生长的酵母细胞似乎不含任何可检测到的线粒体小(37S)核糖体亚基。相反,观察到一种沉降系数为30S的核糖核蛋白颗粒;通过对其蛋白质成分的二维凝胶电泳分析,可以证明该颗粒与线粒体小核糖体亚基有关。由于var1蛋白是已知与线粒体核糖体相关的唯一线粒体翻译产物,我们的结果表明该蛋白对于成熟小亚基的装配至关重要,并且var1蛋白在小亚基装配途径的后期进入该途径。在至少一种酵母菌株中,30-S颗粒的积累似乎对分解代谢物阻遏非常敏感。当酵母细胞在氯霉素而不是红霉素存在下生长时,小亚基的装配似乎仅受到部分抑制,并且无法清楚地证明30-S颗粒的存在。这一观察结果与以下事实一致:在酵母中,氯霉素仅抑制约95%的线粒体蛋白合成,并且var1蛋白的合成似乎对这种抑制最不敏感。