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与膜结构和功能相关的经典范式的崩溃。

Breakdown of classical paradigms in relation to membrane structure and functions.

机构信息

Applied Biophysics and Food Research Center, CIBAAL-UNSE-CONICET, Santiago del Estero, Argentina.

Applied Biophysics and Food Research Center, CIBAAL-UNSE-CONICET, Santiago del Estero, Argentina.

出版信息

Biochim Biophys Acta Biomembr. 2021 Feb 1;1863(2):183512. doi: 10.1016/j.bbamem.2020.183512. Epub 2020 Nov 14.

Abstract

Updates of the mosaic fluid membrane model implicitly sustain the paradigms that bilayers are closed systems conserving a state of fluidity and behaving as a dielectric slab. All of them are a consequence of disregarding water as part of the membrane structure and its essential role in the thermodynamics and kinetics of membrane response to bioeffectors. A correlation of the thermodynamic properties with the structural features of water makes possible to introduce the lipid membrane as a responsive structure due to the relaxation of water rearrangements in the kinetics of bioeffectors' interactions. This analysis concludes that the lipid membranes are open systems and, according to thermodynamic of irreversible formalism, bilayers and monolayers can be reasonable compared under controlled conditions. The inclusion of water in the complex structure makes feasible to reconsider the concept of dielectric slab and fluidity.

摘要

镶嵌流体膜模型的更新隐含地支持了这样的范式

双层膜是封闭系统,保持流动性状态,并表现为介电平板。所有这些都是由于忽略了水作为膜结构的一部分及其在膜对生物效应物响应的热力学和动力学中的重要作用的结果。将热力学性质与水的结构特征相关联,使得有可能将脂质膜引入为响应性结构,这是由于在生物效应物相互作用的动力学中水重排的弛豫。这种分析得出的结论是,脂质膜是开放系统,并且根据不可逆过程热力学形式,在受控条件下可以合理地比较双层膜和单层膜。将水纳入复杂结构中,使得重新考虑介电平板和流动性的概念成为可能。

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