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枯草芽孢杆菌解偶联剂抗性突变体的分离与鉴定

Isolation and characterization of uncoupler-resistant mutants of Bacillus subtilis.

作者信息

Guffanti A A, Clejan S, Falk L H, Hicks D B, Krulwich T A

机构信息

Department of Biochemistry, Mount Sinai School of Medicine, City University of New York, New York 10029.

出版信息

J Bacteriol. 1987 Oct;169(10):4469-78. doi: 10.1128/jb.169.10.4469-4478.1987.

Abstract

Three mutant strains of Bacillus subtilis were isolated on the basis of their ability to grow in the presence of 5 microM carbonyl cyanide m-chlorophenylhydrazone (CCCP). The mutants (AG2A, AG1A3, and AG3A) were also resistant to 2,4-dinitrophenol, and AG2A exhibited resistance to tributyltin and neomycin. The mutants all exhibited (i) elevated levels of membrane ATPase activity relative to the wild type; (ii) slightly elevated respiratory rates, with the cytochrome contents of the membranes being the same as or slightly lower than those of the wild type; (3) a passive membrane permeability to protons that was indistinguishable from that of the wild type in the absence of CCCP and that was increased by addition of CCCP to the same extent as observed with the wild type; and (4) an enhanced sensitivity to valinomycin with respect to the ability of the ionophore to reduce the transmembrane electrical potential. Finally and importantly, starved whole cells of all the mutants synthesized more ATP than the wild type did upon energization in the presence of any one of several agents that lowered the proton motive force. Studies of revertants indicated that the phenotype resulted from a single mutation. Since a mutation in the coupling membrane might produce such pleiotropic effects, an analysis of the membrane lipids was undertaken with preparations made from cells grown in the absence of CCCP. The membrane lipids of the uncoupler-resistant strains differed from those of the wild type in having reduced amounts of monounsaturated C16 fatty acids and increased ratios of iso/anteiso branches on the C15 fatty acids. Correlations between protonophore resistance and the membrane lipid compositions of the wild type, mutants, and revertants were most consistent with the hypothesis that a reduction in the content of monounsaturated C16 fatty acids in the membrane phospholipids is related, perhaps casually, to the ability to synthesize ATP at low bulk transmembrane electrochemical gradients of protons.

摘要

根据枯草芽孢杆菌在5微摩尔羰基氰化物间氯苯腙(CCCP)存在下的生长能力,分离出了三株突变菌株。这些突变体(AG2A、AG1A3和AG3A)对2,4-二硝基苯酚也具有抗性,并且AG2A对三丁基锡和新霉素表现出抗性。所有突变体均表现出:(i)相对于野生型,膜ATP酶活性水平升高;(ii)呼吸速率略有升高,膜的细胞色素含量与野生型相同或略低于野生型;(iii)在不存在CCCP的情况下,质子的被动膜通透性与野生型无差异,加入CCCP后,其增加程度与野生型相同;(iv)相对于离子载体降低跨膜电势的能力,对缬氨霉素的敏感性增强。最后且重要的是,在存在几种降低质子动力势的试剂中的任何一种的情况下进行通电时,所有突变体的饥饿全细胞合成的ATP比野生型更多。对回复突变体的研究表明,该表型是由单个突变引起的。由于偶联膜中的突变可能产生这种多效性效应,因此对在不存在CCCP的情况下生长的细胞制备物进行了膜脂质分析。抗解偶联剂菌株的膜脂质与野生型不同,其单不饱和C16脂肪酸含量减少,C15脂肪酸上的异/反异分支比例增加。野生型、突变体和回复突变体的质子载体抗性与膜脂质组成之间的相关性最符合以下假设:膜磷脂中单不饱和C16脂肪酸含量的降低可能与在低质子跨膜电化学梯度下合成ATP的能力偶然相关。

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