Mechanisms of membrane toxicity of hydrocarbons.

J Sikkema, J A de Bont, B Poolman
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引用次数: 226

Abstract

Microbial transformations of cyclic hydrocarbons have received much attention during the past three decades. Interest in the degradation of environmental pollutants as well as in applications of microorganisms in the catalysis of chemical reactions has stimulated research in this area. The metabolic pathways of various aromatics, cycloalkanes, and terpenes in different microorganisms have been elucidated, and the genetics of several of these routes have been clarified. The toxicity of these compounds to microorganisms is very important in the microbial degradation of hydrocarbons, but not many researchers have studied the mechanism of this toxic action. In this review, we present general ideas derived from the various reports mentioning toxic effects. Most importantly, lipophilic hydrocarbons accumulate in the membrane lipid bilayer, affecting the structural and functional properties of these membranes. As a result of accumulated hydrocarbon molecules, the membrane loses its integrity, and an increase in permeability to protons and ions has been observed in several instances. Consequently, dissipation of the proton motive force and impairment of intracellular pH homeostasis occur. In addition to the effects of lipophilic compounds on the lipid part of the membrane, proteins embedded in the membrane are affected. The effects on the membrane-embedded proteins probably result to a large extent from changes in the lipid environment; however, direct effects of lipophilic compounds on membrane proteins have also been observed. Finally, the effectiveness of changes in membrane lipid composition, modification of outer membrane lipopolysaccharide, altered cell wall constituents, and active excretion systems in reducing the membrane concentrations of lipophilic compounds is discussed. Also, the adaptations (e.g., increase in lipid ordering, change in lipid/protein ratio) that compensate for the changes in membrane structure are treated.

碳氢化合物的膜毒性机制。
在过去的三十年中,微生物对环烃的转化受到了广泛的关注。对环境污染物的降解以及微生物在催化化学反应中的应用的兴趣刺激了这一领域的研究。各种芳烃、环烷烃和萜烯在不同微生物中的代谢途径已经被阐明,其中一些途径的遗传学已经被阐明。这些化合物对微生物的毒性在烃类化合物的微生物降解中非常重要,但对这种毒性作用机制的研究并不多。在这篇综述中,我们提出了从提到毒性作用的各种报告中得出的一般观点。最重要的是,亲脂性碳氢化合物在膜脂双分子层中积累,影响这些膜的结构和功能特性。由于碳氢化合物分子的积累,膜失去了完整性,并且在几个例子中观察到对质子和离子的渗透性增加。因此,质子动力的耗散和细胞内pH稳态的损害发生。除了亲脂化合物对膜脂部分的影响外,嵌入膜中的蛋白质也受到影响。对膜包埋蛋白的影响可能在很大程度上是由于脂质环境的变化;然而,亲脂化合物对膜蛋白的直接作用也被观察到。最后,讨论了膜脂成分的改变、外膜脂多糖的修饰、细胞壁成分的改变和活性排泄系统在降低亲脂化合物膜浓度方面的有效性。此外,适应性(例如,脂质排序的增加,脂质/蛋白质比例的变化)补偿了膜结构的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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