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首页> 外文期刊>Journal of Molecular Biology >THE +70 PAUSE - HYPOTHESIS OF A TRANSLATIONAL CONTROL OF MEMBRANE PROTEIN ASSEMBLY
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THE +70 PAUSE - HYPOTHESIS OF A TRANSLATIONAL CONTROL OF MEMBRANE PROTEIN ASSEMBLY

机译:+70暂停-膜蛋白组件翻译控制假说

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摘要

Sequences of 66 genes encoding bacterial or yeast membrane proteins have been examined for the respective positioning of putative transmembrane domains and translational pauses. The latter were operationally defined as clusters of at least 17 non-preferred codons along the mRNA. The putative transmembrane domains were defined as stretches of at least 17 hydrophobic amino acids in the encoded protein. For yeast non-mitochondrial membrane proteins, it was observed that clusters of non-preferred codons occur more frequently about 56 to 75 codons after a hydrophobic stretch in the encoded protein. About 40 amino acid residues are required to span the large ribosomal subunit. Such clusters were thus predicted to cause a severe slow-down in peptide elongation, just when the hydrophobic stretch fully protrudes from the ribosome. This transient slow-down of the ribosome pace has consequently been named the ''+70 pause''. This pause was not observed for mitochondrial or bacterial membrane proteins, which are thought to insert post-translationally in their respective membranes. Because insertion of yeast proteins in the endoplasmic reticulum membrane is generally cotranslational instead, it is possible that the ''+70 pause'' reflects the coupling of translation, targeting, insertion and folding in this case. The pause may, for instance, give time for productive interaction of the newly synthesized hydrophobic domain with the proper targeting/insertion machineries. Thus, it would favor entrance of the stalled protein domain into the proper pathway. (C) 1996 Academic Press Limited [References: 47]
机译:已检查了66个编码细菌或酵母膜蛋白的基因的序列,以推定跨膜结构域和翻译暂停的位置。后者在操作上被定义为沿着mRNA的至少17个非优选密码子的簇。假定的跨膜结构域定义为编码蛋白中至少17个疏水性氨基酸的片段。对于酵母非线粒体膜蛋白,观察到在编码蛋白的疏水性延伸后,非优选密码子簇更频繁地出现约56至75个密码子。跨越大核糖体亚基需要约40个氨基酸残基。因此,正好在疏水性片段完全从核糖体中突出时,这样的簇被预测会引起肽伸长的严重减慢。因此,核糖体步伐的这种暂时性减慢被称为“ +70暂停”。对于线粒体或细菌膜蛋白没有观察到这种暂停,认为线粒体或细菌膜蛋白在翻译后插入其各自的膜中。因为通常将酵母蛋白插入内质网膜中是共翻译的,所以在这种情况下,“ + 70暂停”可能反映了翻译,靶向,插入和折叠的耦合。停顿可以例如为新合成的疏水域与适当的靶向/插入机制的生产性相互作用提供时间。因此,这将有利于使停滞的蛋白结构域进入适当的途径。 (C)1996 Academic Press Limited [参考号:47]

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