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Detachment of the RNA degradosome from the inner membrane of Escherichia coli results in a global slowdown of mRNA degradation, proteolysis of RNase E and increased turnover of ribosome-free transcripts

机译:从大肠杆菌的内膜脱离RNA降解导致MRNA降解的全球放缓,RNase E的蛋白水解和核糖体转录物的增加

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摘要

The reason for RNase E attachment to the inner membrane is largely unknown. To understand the cell biology of RNA degradation, we have characterized a strain expressing RNase E lacking the membrane attachment site (cytoplasmic RNase E). Genome-wide data show a global slowdown in mRNA degradation. There is no correlation between mRNA stabilization and the function or cellular location of encoded proteins. The activity of cRNase E is comparable to the wild-type enzyme in vitro, but the mutant protein is unstable in vivo. Autoregulation of cRNase E synthesis compensates for protein instability. cRNase E associates with other proteins to assemble a cytoplasmic RNA degradosome. CsrB/C sRNAs, whose stability is regulated by membrane-associated CsrD, are stabilized. Membrane attachment of RNase E is thus necessary for CsrB/C turnover. In contrast to mRNA stability, ribosome-free transcripts are sensitive to inactivation by cRNase E. Our results show that effects on RNA degradation are not due to the differences in the activity or level of cRNase E, or failure to assemble the RNA degradosome. We propose that membrane attachment is necessary for RNase E stability, functional interactions with membrane-associated regulatory factors and protection of ribosome-free transcripts from premature interactions with RNase E in the nucleoid.
机译:RNase e附着于内膜的原因在很大程度上是未知的。为了了解RNA降解的细胞生物学,表征表达缺少膜附着部位(细胞质RNase E)的RNase E的菌株。基因组数据显示MRNA降解的全局放缓。 mRNA稳定化与编码蛋白的功能或细胞位置之间没有相关性。 CRNase E的活性与体外野生型酶相当,但突变蛋白在体内不稳定。 Crnase E合成的自疗可补偿蛋白质不稳定性。 Crnase E与其他蛋白质相关联用于组装细胞质RNA降解体。 CSRB / C SRNA,其稳定性由膜相关的CSRD调节,稳定。因此,RNase E的膜附着对于CSRB / C营业额是必需的。与mRNA稳定性相反,通过CRNASE E对核糖体的转录物敏感。我们的结果表明,对RNA降解的影响不是由于CRNase E的活性或水平的差异或未组装RNA降解剂。我们提出膜附着对于RNase E稳定性,与膜相关的调节因子的功能相互作用以及从核心e中与RNase E的过早相互作用保护核糖体的转录物。

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