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在适应有毒有机化合物存在的过程中,Methylococcus capsulatus Bath 中存在一种不饱和脂肪酸顺反异构酶的生理证据。

Physiological evidence for the presence of a cis-trans isomerase of unsaturated fatty acids in Methylococcus capsulatus Bath to adapt to the presence of toxic organic compounds.

机构信息

Department of Environmental Biotechnology, Helmholtz Centre for Environmental Research - UFZ, Leipzig, Germany.

出版信息

FEMS Microbiol Lett. 2010 Jul 1;308(1):68-75. doi: 10.1111/j.1574-6968.2010.01993.x. Epub 2010 Apr 20.

Abstract

The physiology of the response in the methanotrophic bacterium Methylococcus capsulatus Bath towards thermal and solvent stress was studied. A systematic investigation of the toxic effects of organic compounds (chlorinated phenols and alkanols) on the growth of this bacterium was carried out. The sensitivity to the tested alkanols correlated with their chain length and hydrophobicity; methanol was shown to be an exception to which the cells showed a very high tolerance. This can be explained by the adaptation of these bacteria to growth on C1 compounds. On the other hand, M. capsulatus Bath was very sensitive towards the tested chlorinated phenols. The high toxic effect of phenolic compounds on methanotrophic bacteria might be explained by the occurrence of toxic reactive oxygen species. In addition, a physiological proof of the presence of cis-trans isomerization as a membrane-adaptive response mechanism in M. capsulatus was provided. This is the first report on physiological evidence for the presence of the unique postsynthetic membrane-adaptive response mechanism of the cis-trans isomerization of unsaturated fatty acids in a bacterium that does not belong to the genera Pseudomonas and Vibrio where this mechanism was already reported and described extensively.

摘要

对生甲烷菌 Methylococcus capsulatus Bath 对热和溶剂应激的反应生理学进行了研究。对该细菌生长的有机化合物(氯酚和链烷醇)的毒性效应进行了系统研究。对测试的链烷醇的敏感性与其链长和疏水性相关;甲醇是一个例外,细胞对其表现出很高的耐受性。这可以通过这些细菌适应 C1 化合物的生长来解释。另一方面,M. capsulatus Bath 对测试的氯酚非常敏感。酚类化合物对甲烷氧化菌的高毒性效应可能是由于有毒活性氧物质的存在。此外,还提供了 cis-trans 异构化作为 M. capsulatus 中膜适应性反应机制存在的生理证据。这是第一个关于 cis-trans 不饱和脂肪酸的独特的后生膜适应性反应机制在不属于假单胞菌属和弧菌属的细菌中存在的生理证据的报道,在这两个属中,已经广泛报道和描述了这种机制。

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