Black-Schaefer C L, McCourt J D, Poyton R O, McKee E E
Department of Biological Chemistry and Structure, University of Health Sciences/Chicago Medical School, IL 60064.
Biochem J. 1991 Feb 15;274 ( Pt 1)(Pt 1):199-205. doi: 10.1042/bj2740199.
We demonstrate here that mitochondrial translation products synthesized by isolated yeast mitochondria are subject to rapid proteolysis. The loss of label from mitochondrial peptides synthesized in vitro comes from two distinct pools of peptides: one that is rapidly degraded (t1/2 of minutes) and one that is much more resistant to proteolysis (t1/2 of hours). As the length of the incubation period increases, the percentage of labelled peptides in the rapidly-turning-over pool decreases and cannot be detected after 60 min of incubation. This proteolysis is inhibited by chloramphenicol and is dependent on the presence of ATP. The loss of label during the chase occurs from fully completed translation products. The proteolysis observed here markedly affects measurements of rates of mitochondrial protein synthesis in isolated yeast mitochondria. In earlier work, in which proteolysis was not considered, mitochondrial translation was thought to stop after 20-30 min of incubation. In the present study, by taking proteolysis into account, we demonstrate that the rate of translation in isolated mitochondria is actually constant for nearly 60 min and then decreases to near zero by 80 min of incorporation. These findings have allowed us to devise a procedure for measuring the 'true' rate of translation in isolated mitochondria. In addition, they suggest that mitochondrial translation products which normally assemble with nuclear-encoded gene products into multimeric enzyme complexes are unstable without their nuclear-encoded counterparts.
我们在此证明,分离出的酵母线粒体合成的线粒体翻译产物会迅速发生蛋白水解。体外合成的线粒体肽段中标记的丢失来自两个不同的肽段池:一个迅速降解(半衰期为几分钟),另一个对蛋白水解的抵抗力要强得多(半衰期为几小时)。随着孵育时间的增加,快速周转池中标记肽段的百分比降低,孵育60分钟后就无法检测到。这种蛋白水解受到氯霉素的抑制,并且依赖于ATP的存在。追踪过程中标记的丢失发生在完全完成的翻译产物中。此处观察到的蛋白水解显著影响分离出的酵母线粒体中线粒体蛋白质合成速率的测量。在早期未考虑蛋白水解的研究中,线粒体翻译被认为在孵育20 - 30分钟后停止。在本研究中,通过考虑蛋白水解,我们证明分离线粒体中的翻译速率实际上在近60分钟内是恒定的,然后在掺入80分钟时降至接近零。这些发现使我们能够设计出一种测量分离线粒体中“真实”翻译速率的方法。此外,它们表明,通常与核编码基因产物组装成多聚酶复合物的线粒体翻译产物,在没有其核编码对应物的情况下是不稳定的。