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Partitioning and translation of mRNAs encoding soluble proteins on membrane-bound ribosomes

机译:膜结合核糖体上编码可溶性蛋白的mRNA的分区和翻译

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摘要

In eukaryotic cells, it is generally accepted that protein synthesis is compartmentalized; soluble proteins are synthesized on free ribosomes, whereas secretory and membrane proteins are synthesized on endoplasmic reticulum (ER)-bound ribosomes. The partitioning of mRNAs that accompanies such compartmentalization arises early in protein synthesis, when ribosomes engaged in the translation of mRNAs encoding signal-sequence-bearing proteins are targeted to the ER. In this report, we use multiple cell fractionation protocols, in combination with cDNA microarray, nuclease protection, and Northern blot analyses, to assess the distribution of mRNAs between free and ER-bound ribosomes. We find a broad representation of mRNAs encoding soluble proteins in the ER fraction, with a subset of such mRNAs displaying substantial ER partitioning. In addition, we present evidence that membrane-bound ribosomes engage in the translation of mRNAs encoding soluble proteins. Single-cell in situ hybridization analysis of the subcellular distribution of mRNAs encoding ER-localized and soluble proteins identify two overall patterns of mRNA distribution in the cell-endoplasmic reticular and cytosolic. However, both partitioning patterns include a distinct perinuclear component. These results identify previously unappreciated roles for membrane-bound ribosomes in the subcellular compartmentalization of protein synthesis and indicate possible functions for the perinuclear membrane domain in mRNA sorting in the cell. [References: 31]
机译:在真核细胞中,通常认为蛋白质合成是分隔的。可溶性蛋白是在游离核糖体上合成的,而分泌蛋白和膜蛋白是在内质网(ER)结合的核糖体上合成的。当参与编码信号序列蛋白的mRNA翻译的核糖体靶向ER时,伴随这种间隔的mRNA的分配出现在蛋白质合成的早期。在本报告中,我们使用多种细胞分离方案,并结合cDNA微阵列,核酸酶保护和Northern blot分析,以评估游离和结合ER的核糖体之间的mRNA分布。我们发现ER分数中编码可溶性蛋白的mRNA的广泛表示,这种mRNA的子集显示出大量的ER分配。此外,我们目前的证据表明膜结合的核糖体参与编码可溶性蛋白的mRNA的翻译。编码ER定位和可溶性蛋白的mRNA的亚细胞分布的单细胞原位杂交分析确定了细胞内质网状和胞质中mRNA分布的两种总体模式。但是,两种划分模式均包含不同的核周成分。这些结果确定了膜结合的核糖体在蛋白质合成的亚细胞区室化中先前未曾意识到的作用,并表明了细胞中mRNA分选中核周膜结构域的可能功能。 [参考:31]

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