Malinsky Jan, Tanner Widmar, Opekarova Miroslava
Institute of Experimental Medicine, Academy of Sciences of the Czech Republic, Vídeňská 1083, 142 20 Prague, Czech Republic.
Institute of Cell Biology and Plant Physiology, University of Regensburg, 93053 Regensburg, Germany.
Biochim Biophys Acta. 2016 Aug;1861(8 Pt B):806-811. doi: 10.1016/j.bbalip.2016.02.012. Epub 2016 Feb 20.
Lateral segregation of plasma membrane lipids is a generally accepted phenomenon. Lateral lipid microdomains of specific composition, structure and biological functions are established as a result of simultaneous action of several competing mechanisms which contribute to membrane organization. Various lines of evidence support the conclusion that among those mechanisms, the membrane potential plays significant and to some extent unique role. Above all, clear differences in the microdomain structure as revealed by fluorescence microscopy could be recognized between polarized and depolarized membranes. In addition, recent fluorescence spectroscopy experiments reported depolarization-induced changes in a membrane lipid order. In the context of earlier findings showing that plasma membranes of depolarized cells are less susceptible to detergents and the cells less sensitive to antibiotics or antimycotics treatment we discuss a model, in which membrane potential-driven re-organization of the microdomain structure contributes to maintaining membrane integrity during response to stress, pathogen attack and other challenges involving partial depolarization of the plasma membrane. This article is part of a Special Issue entitled: The cellular lipid landscape edited by Tim P. Levine and Anant K. Menon.
质膜脂质的侧向分离是一个被广泛接受的现象。由于几种相互竞争的机制共同作用,形成了具有特定组成、结构和生物学功能的侧向脂质微区,这些机制有助于膜的组织。各种证据支持这样的结论:在这些机制中,膜电位起着重要且在某种程度上独特的作用。首先,通过荧光显微镜观察到,极化膜和去极化膜之间微区结构存在明显差异。此外,最近的荧光光谱实验报道了去极化诱导的膜脂质有序性变化。结合早期的研究结果,即去极化细胞的质膜对去污剂的敏感性较低,细胞对抗生素或抗真菌药物治疗的敏感性也较低,我们讨论了一个模型,其中膜电位驱动的微区结构重组有助于在应对压力、病原体攻击和其他涉及质膜部分去极化的挑战时维持膜的完整性。本文是由蒂姆·P·莱文和阿南特·K·梅农编辑的特刊《细胞脂质格局》的一部分。