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首页> 外文期刊>Molecular and Cellular Biology >Dual pathways for ribonucleic acid turnover in WI-38 but not in I-cell human diploid fibroblasts.
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Dual pathways for ribonucleic acid turnover in WI-38 but not in I-cell human diploid fibroblasts.

机译:WI-38中核糖核酸更新的双重途径,但在I细胞人二倍体成纤维细胞中没有。

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The turnover rates of 3H-labeled 18S ribosomal ribonucleic acid (RNA), 28S ribosomal RNA, transfer RNA, and total cytoplasmic RNA were very similar in growing WI-38 diploid fibroblasts. The rate of turnover was at least twofold greater when cell growth stopped due to cell confluence, 3H irradiation, or treatment with 20 mM NaN3 or 2 mM NaF. In contrast, the rate of total 3H-protein turnover was the same in growing and nongrowing cells. Both RNA and protein turnovers were accelerated at least twofold in WI-38 cells deprived of serum, and this increase in turnover was inhibited by NH4Cl. These results are consistent with two pathways for RNA turnover, one of them being nonlysosomal and the other being lysosome mediated (NH4Cl sensitive), as has been suggested for protein turnover. Also consistent with the notion of two pathways for RNA turnover were findings with I-cells, which are deficient for many lysosomal enzymes, and in which all RNA turnover was nonlysosomal (NH4Cl resistant).
机译:3H标记的18S核糖体核糖核酸(RNA),28S核糖体RNA,转移RNA和总细胞质RNA的周转率在生长的WI-38二倍体成纤维细胞中非常相似。当由于细胞汇合,3H辐射或用20 mM NaN3或2 mM NaF处理而停止细胞生长时,周转率至少高两倍。相反,在生长和未生长的细胞中,总3H蛋白更新的速率相同。在缺少血清的WI-38细胞中,RNA和蛋白质的更新都被加速了至少两倍,并且这种更新的增加被NH4Cl抑制了。这些结果与RNA转换的两条途径一致,其中一条是非溶酶体的,而另一条是溶酶体介导的(对NH4C1敏感),正如蛋白质转换所建议的那样。 I细胞的发现也与RNA转换的两个途径的概念一致,I细胞缺乏许多溶酶体酶,并且所有RNA的转换都不是溶酶体的(对NH4C1具有抗性)。

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