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对大肠杆菌突变体进行遗传和生化分析,这些突变体在膜脂成分的温度依赖性调节方面发生了改变。

Genetic and biochemical analyses of Escherichia coli mutants altered in the temperature-dependent regulation of membrane lipid composition.

作者信息

Ulrich A K, de Mendoza D, Garwin J L, Cronan J E

出版信息

J Bacteriol. 1983 Apr;154(1):221-30. doi: 10.1128/jb.154.1.221-230.1983.

Abstract

We have previously studied two mutants of Escherichia coli altered in the regulation of membrane lipid composition by temperature. One class (represented by the fabFl allele) fails to regulate upon temperature shift and is defective in cis-vaccenic acid synthesis owing to the lack of the fatty acid elongation enzyme beta-ketoacyl-acyl carrier protein synthase II(EC 2.3.1.41). A second class of mutant, given the phenotypic designation Vtr, overproduces cis-vaccenic acid at all temperatures and hence is altered in temperature regulation. In this paper we report evidence for the following conclusions. (i) The Vtr and fabFl mutations show very tight genetic linkage. (ii) The Vtr lesion is allelic to the fabFl mutation since the presence of the fabFl mutation in merodiploid strains carrying the Vtr or fabF(+) alleles results in fatty acid compositions intermediate between those of the two monoploid strains. Merodiploids carrying both the fabF(+) and Vtr alleles likewise show an intermediate composition. These results indicate intra-allelic complementation. (iii) The two E. coli proteins recently discovered by Rock (J. Bacteriol. 152:1298-1300, 1982) that form mixed disulfide cross-links to acyl carrier protein are directly demonstrated to be beta-ketoacyl-acyl carrier protein synthases I and II. (iv) The fabFl strains produce a synthase II band of altered electrophoretic mobility, indicating that the fabF locus is the structural gene for synthase II. (v) The synthase II of Vtr strains is abnormally sensitive to cerulenin, an antibiotic that specifically inhibits synthases I and II. This increased sensitivity is readily demonstrated in vivo, but in vitro we failed to detect an increased sensitivity of the Vtr synthase II to cerulenin, nor have we detected any other kinetic or structural alteration in the enzyme. We interpret these results in terms of specific interactions of synthase II with other cellular components which occur in vivo but are not duplicated in vitro.

摘要

我们之前研究了大肠杆菌的两个突变体,它们在温度对膜脂成分的调控方面发生了改变。一类(以fabFl等位基因代表)在温度变化时无法进行调控,并且由于缺乏脂肪酸延伸酶β-酮酰-酰基载体蛋白合酶II(EC 2.3.1.41),在顺式- vaccenic酸合成方面存在缺陷。第二类突变体,其表型命名为Vtr,在所有温度下都过量产生顺式- vaccenic酸,因此在温度调控方面发生了改变。在本文中,我们报告了支持以下结论的证据。(i)Vtr和fabFl突变显示出非常紧密的遗传连锁。(ii)Vtr损伤与fabFl突变等位,因为在携带Vtr或fabF(+)等位基因的部分二倍体菌株中存在fabFl突变会导致脂肪酸组成介于两个单倍体菌株之间。携带fabF(+)和Vtr等位基因的部分二倍体同样显示出中间组成。这些结果表明等位基因内互补。(iii)最近由Rock(《细菌学杂志》152:1298 - 1300,1982)发现的与酰基载体蛋白形成混合二硫键交联的两种大肠杆菌蛋白被直接证明是β-酮酰-酰基载体蛋白合酶I和II。(iv)fabFl菌株产生了电泳迁移率改变的合酶II条带,表明fabF基因座是合酶II的结构基因。(v)Vtr菌株的合酶II对浅蓝菌素异常敏感,浅蓝菌素是一种特异性抑制合酶I和II的抗生素。这种增加的敏感性在体内很容易证明,但在体外我们未能检测到Vtr合酶II对浅蓝菌素的敏感性增加,我们也未在该酶中检测到任何其他动力学或结构改变。我们根据合酶II与其他细胞成分在体内发生但在体外未重复的特异性相互作用来解释这些结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7f5/217450/077da9e7c47c/jbacter00245-0232-a.jpg

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