首页> 外文期刊>Journal of cell biology >Cytoplasmic type 80S ribosomes associated with yeast mitochondria. IV. Attachment of ribosomes to the outer membrane of isolated mitochondria.
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Cytoplasmic type 80S ribosomes associated with yeast mitochondria. IV. Attachment of ribosomes to the outer membrane of isolated mitochondria.

机译:细胞质80S型核糖体与酵母线粒体相关。 IV。核糖体附着在分离的线粒体的外膜上。

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Growing yeast spheroplasts were shown to have, on the average, four times the number of cytoplasmic ribosomes in contact with the outer mitochondrial membrane compared to starved spheroplasts. Ribosomes in contact with mitochondria in the growing spheroplast preparation, like free cytoplasmic ribosomes, exist primarily as polysome structures. In the starved spheroplast preparation, both mitochondria-bound and free cytoplasmic ribosomes exist primarily as monosomes. Mitochondria isolated from growing spheroplasts in a medium containing lmM Mg++ have cytoplasmic ribosomes bound directly to the outer membrane. These ribosomes can be quantitatively removed by washing the mitochondria with 2 mM EDTA. Mitochondria from starved spheroplasts are capable of accepting either free cytoplasmic polysomes or cytoplasmic polysomes extracted from mitochondria. However, the extent of polysome binding to mitochondria was shown to be a direct function of the Mg++ concentration; a smaller percentage of the input polysomes bind as the Mg++ concentration is lowered. At 1 mM Mg++, neither free cytoplasmic nor mitochondria-bound polysomes bind to mitochondria. Nevertheless, when growing spheroplasts are broken and mitochondria isolated in medium containing 1 mM Mg++, the mitochondria are seen to have cytoplasmic ribosomes firmly attached to the outer membrane. This result, in addition to our earlier data (Kellems, R. E., and R. A. Butow. 1974. J. Biol. Chem. 249:3304-3310), support the view that cytoplasmic ribosomes attached to the outer membrane of purified mitochondria were attached in vivo. In preparations of mitochondria isolated from growing spheroplasts, ribosomes appear to be found to specific regions of the outer membrane, namely those regions which are in close association or in contact with the inner mitochondrial membrane. This is particularly evident with mitochondria in a condensed configuration. This finding suggests a mechanism whereby cytoplasmically synthesized mitochondrial protein could be transferred by a process of vectorial translation across both membranes of the organelle.
机译:已显示,与饥饿的原生质球相比,生长中的酵母原生质球平均具有与线粒体外膜接触的胞质核糖体数量的四倍。在生长的原生质球制剂中与线粒体接触的核糖体,像游离的细胞质核糖体一样,主要以多核糖体结构存在。在饥饿的原生质球制剂中,线粒体结合的和游离的细胞质核糖体都主要以单核糖体形式存在。在含有lmM Mg ++的培养基中,从生长的原生质球中分离出的线粒体具有直接结合在外膜上的胞质核糖体。这些核糖体可以通过用2 mM EDTA洗涤线粒体来定量去除。来自饥饿的原生质球的线粒体能够接受游离的细胞质多核糖体或从线粒体提取的细胞质多核糖体。然而,多核糖体与线粒体结合的程度被证明是Mg ++浓度的直接函数。随着Mg ++浓度的降低,输入的多核糖体的结合比例降低。在1 mM Mg ++时,游离的细胞质和线粒体结合的多核糖体都不会与线粒体结合。然而,当生长的原生质球破裂并在含有1 mM Mg ++的培养基中分离出线粒体时,线粒体的胞质核糖体牢固地附着在外膜上。除了我们先前的数据(Kellems,RE,and RA Butow。1974. J. Biol。Chem。249:3304-3310)外,该结果还支持以下观点:附着在纯化线粒体外膜上的胞质核糖体体内。从生长的原生质球中分离出的线粒体制剂中,核糖体似乎存在于外膜的特定区域,即那些与内线粒体膜紧密结合或接触的区域。对于线粒体在浓缩构型中尤其明显。该发现提示了一种机制,通过该机制细胞质合成的线粒体蛋白可以通过跨细胞器两膜的矢量翻译过程进行转移。

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