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酵母中线粒体结合的细胞质多聚核糖体的产物。

The products of mitochondria-bound cytoplasmic polysomes in yeast.

作者信息

Ades I Z, Butow R A

出版信息

J Biol Chem. 1980 Oct 25;255(20):9918-24.

PMID:6448841
Abstract

Experiments were undertaken to examine the fate and composition of polypeptides synthesized on cytoplasmic polysomes associated with the outer mitochondrial membrane of Saccharomyces cerevisiae. Mitochondria with their associated cytoplasmic polysomes were isolated from growing yeast spheroplasts and placed in a polypeptide chain completion system together with [35S]methionine. Of the total products synthesized in the readout system, 80 to 85% remain associated with the mitochondria after sucrose gradient centrifugation. Most of the labeled products are resistant to papain digestion unless the membranes are disrupted by treatment with detergent or shaking with glass beads. When free cytoplasmic polysomes were translated in the presence of [35S]methionine and incubated with mitochondria, only about 20% of the labeled polypeptides remain associated with the mitochondria; furthermore, most of these products are equally sensitive to papain digestion in the presence or absence of detergent. These results support the view that the cytoplasmic polysomes associated with the outer mitochondrial membrane of yeast facilitate the segregation of newly synthesized proteins into the organelle. The proportion of the alpha, beta, and gamma subunits of the F1-ATPase was determined among the products synthesized by mitochondria-bound and free cytoplasmic polysomes. By double antibody precipitation and immunoreplicate electrophoresis, we find that the proportion of the subunits of F1-ATPase is much greater among the products of the mitochondria-bound polysomes than those synthesized on free polysomes.

摘要

开展了实验以研究在与酿酒酵母线粒体外膜相关的胞质多核糖体上合成的多肽的命运和组成。从生长中的酵母原生质体中分离出带有相关胞质多核糖体的线粒体,并与[35S]甲硫氨酸一起置于多肽链完成系统中。在读出系统中合成的总产物中,80%至85%在蔗糖梯度离心后仍与线粒体相关。大多数标记产物对木瓜蛋白酶消化具有抗性,除非通过用去污剂处理或与玻璃珠振荡来破坏膜。当游离的胞质多核糖体在[35S]甲硫氨酸存在下进行翻译并与线粒体一起孵育时,只有约20%的标记多肽仍与线粒体相关;此外,这些产物中的大多数在有无去污剂的情况下对木瓜蛋白酶消化同样敏感。这些结果支持这样一种观点,即与酵母线粒体外膜相关的胞质多核糖体有助于将新合成的蛋白质分隔到细胞器中。在与线粒体结合的和游离的胞质多核糖体合成的产物中测定了F1 - ATP酶的α、β和γ亚基的比例。通过双抗体沉淀和免疫重复电泳,我们发现F1 - ATP酶亚基的比例在与线粒体结合的多核糖体的产物中比在游离多核糖体上合成的产物中要大得多。

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