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核糖体蛋白 S8 发生改变的大肠杆菌突变体的冷敏感生长:回复突变体分析

Cold-sensitive growth of a mutant of Escherichia coli with an altered ribosomal protein S8: analysis of revertants.

作者信息

Geyl D, Böck A, Wittmann H G

出版信息

Mol Gen Genet. 1977 Apr 29;152(3):331-6. doi: 10.1007/BF00693088.

Abstract

26 cold-resistant revertants of a cold-sensitive Escherichia coli mutant with an altered ribosomal protein S8 were analyzed for their ribosomal protein pattern by two-dimensional polyacrylamide gel electrophoresis. It was found that 16 of them had acquired the apparent wild-type form of protein S8, one exhibits a more strongly altered SC than the original mutant and two revertants regained the wildtype form of S8 and, in addition, possess alterations in protein L30. The ribosomes of the residual revertants showed no detectable difference from those of the parental S8 mutant. The mutation leading to the more strongly altered S8 was genetically not separable from the primary S8 mutation; this indicates that both mutations are very close to each other or at the same site. The structural gene for ribosomal protein L30 was mapped relative to two other ribosomal protein genes (for proteins S5 and S8) by the aid of one of the L30 mutants: The relative order obtained is: aroE....rpmD(L30)....rpsE(S5)....rpsH(S8)....rpsL(S12). The L30 mutation impairs growth and ribosomal assembly at 20 degrees C and is therefore the first example of a mutant with defined 50S alteration that has (partial) cold-sensitive ribosome assembly. A double mutant was constructed which possesses both the S8 and the L30 mutations. It was found that the L30 mutation had a slight antagonistic effect on the growth inhibition caused by the S8 mutation. Thus the L30 mutants might have possibly arisen from the original S8 mutant first as S8/L30 double mutants which was followed by the loss of the original S8 lesion.

摘要

通过二维聚丙烯酰胺凝胶电泳分析了26株对温度敏感的大肠杆菌突变体的耐寒回复突变体,该突变体的核糖体蛋白S8发生了改变。结果发现,其中16株获得了明显的野生型蛋白S8形式,1株表现出比原始突变体更强的SC改变,2株回复突变体重获了野生型S8形式,此外,蛋白L30也有改变。其余回复突变体的核糖体与亲本S8突变体的核糖体没有可检测到的差异。导致S8改变更强的突变在遗传上与原发性S8突变不可分离;这表明这两个突变彼此非常接近或位于同一位置。借助其中一个L30突变体,将核糖体蛋白L30的结构基因相对于另外两个核糖体蛋白基因(蛋白S5和S8的基因)进行了定位:得到的相对顺序是:aroE....rpmD(L30)....rpsE(S5)....rpsH(S8)....rpsL(S12)。L30突变在20摄氏度时损害生长和核糖体组装,因此是第一个具有确定的50S改变且具有(部分)温度敏感核糖体组装的突变体例子。构建了一个同时具有S8和L30突变的双突变体。发现L30突变对S8突变引起的生长抑制有轻微的拮抗作用。因此,L30突变体可能最初是作为S8/L30双突变体从原始S8突变体中产生的,随后原始S8损伤丢失。

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