首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Segregation of the polypeptide translocation apparatus to regions of the endoplasmic reticulum containing ribophorins and ribosomes. I. Functional tests on rat liver microsomal subfractions
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Segregation of the polypeptide translocation apparatus to regions of the endoplasmic reticulum containing ribophorins and ribosomes. I. Functional tests on rat liver microsomal subfractions

机译:多肽易位装置分离到含有核糖蛋白和核糖体的内质网区域。 I.对大鼠肝微粒体亚组分的功能测试

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摘要

A preparation of rat liver microsomes containing 70% of the total cellular endoplasmic reticulum (ER) membranes was subfractionated by isopycnic density centrifugation. Twelve subfractions of different ribosome content ranging in density from 1.06 to 1.29 were obtained and analyzed with respect to marker enzymes, RNA, and protein content, as well as the capacity of these membranes to bind 80S ribosomes in vitro. After removal of native polysomes from these microsomal subfractions by puromycin in a buffer of high ionic strength their capacity to rebind 80S ribosomes approached levels found in the corresponding native membranes before ribosome stripping. This indicates that in vitro rebinding of ribosomes occurs to the same sites occupied in the cell by membrane-bound polysomes. Microsomes in the microsomal subfractions were also tested for their capacity to effect the translocation of nascent secretory proteins into the microsomal lumen utilizing a rabbit reticulocyte translation system programmed with mRNA coding for the precursor of human placental lactogen. Membranes from microsomes with the higher isopycnic density and a high ribosome content showed the highest translocation activity, whereas membranes derived from smooth microsomes had only a very low translocation activity. These results indicate the membranes of the rough and smooth portions of the endoplasmic reticulum are functionally differentiated so that sites for ribosome binding and the translocation of nascent polypeptides are segregated to the rough domain of the organelle.
机译:通过等密度密度离心将含有总细胞内质网(ER)膜70%的大鼠肝微粒体制剂细分。获得了十二个不同核糖体含量的亚组分,其密度范围为1.06-1.29,并就标记酶,RNA和蛋白质含量以及这些膜在体外结合80S核糖体的能力进行了分析。在嘌呤霉素高离子强度的缓冲液中从这些微粒子级分中去除天然多核糖体后,它们重新结合80S核糖体的能力达到了在去除核糖体之前在相应天然膜中发现的水平。这表明核糖体的体外重新结合发生在膜结合的多核糖体在细胞中占据的相同位点。还使用了兔网织红细胞翻译系统,该程序编码有编码人胎盘乳原的前体的mRNA,从而测试了微粒体亚组分中的微粒体影响新生分泌蛋白向微粒体腔内转运的能力。来自等密度密度较高和核糖体含量较高的微粒体的膜显示出最高的转运活性,而源自平滑微粒体的膜仅具有非常低的转运活性。这些结果表明内质网的粗糙和光滑部分的膜在功能上是分化的,因此核糖体结合和新生多肽易位的位点被分离到细胞器的粗糙结构域。

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