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核糖核酸酶III缺失对大肠杆菌细胞的影响。

Consequences of losing ribonuclease III on the Escherichia coli cell.

作者信息

Apirion D, Neil J, Watson N

出版信息

Mol Gen Genet. 1976 Mar 22;144(2):185-90. doi: 10.1007/BF02428107.

Abstract

An isogenic pair of Escherichia coli strains, one carrying an rnc+ and the other an rnc- allele (a mutation which reduces the level of ribonuclease III), was compared. The rnc- strain fails to grow at very elevated temperatures (for E. coli) while the rnc+ strain does grow exponentially. Assaying the residual RNase III like activity in extracts of the rnc- strain at different pHs and at different temperatures suggested that this residual RNase III like activity is not due to RNase III. This raised the possibility that the rnc- strain is devoid of any RNase III activity in the cell. Comparing the decay of newly synthesized RNA and functional decay of beta-galactosidase mRNA in such strains revealed that in both strains these parameters proceed in similar rates, which suggests that RNase III is not involved in the metabolism of mRNA. During carbon starvation preexisting total RNA, as well as 23S and 16S rRNA, decay faster in the rnc- strain, thus eliminating the possibility that RNase III is the endoribonuclease which initiates the decay of rRNA during starvation (Kaplan and Apirion, 1975a).

摘要

对一对同基因的大肠杆菌菌株进行了比较,其中一个携带rnc + 等位基因,另一个携带rnc - 等位基因(一种降低核糖核酸酶III水平的突变)。rnc - 菌株在非常高的温度(对大肠杆菌而言)下无法生长,而rnc + 菌株则呈指数生长。在不同pH值和不同温度下测定rnc - 菌株提取物中的残余核糖核酸酶III样活性,表明这种残余的核糖核酸酶III样活性并非由核糖核酸酶III引起。这增加了rnc - 菌株细胞中缺乏任何核糖核酸酶III活性的可能性。比较此类菌株中新合成RNA的衰变和β-半乳糖苷酶mRNA的功能衰变发现,在这两种菌株中,这些参数的变化速率相似,这表明核糖核酸酶III不参与mRNA的代谢。在碳饥饿期间,rnc - 菌株中预先存在的总RNA以及23S和16S rRNA的衰变更快,从而排除了核糖核酸酶III是饥饿期间启动rRNA衰变的内切核糖核酸酶的可能性(卡普兰和阿皮里翁,1975a)。

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