Sorbonne University, Faculty of Science and Engineering, UFR 925 Physics, Paris F-75005, France; University Paris Diderot - Paris 7, Sorbonne Paris Cité, Laboratory Matière et Systèmes Complexes (MSC) UMR 7057 CNRS, Paris F-75013, France.
Sorbonne University, Faculty of Science and Engineering, Laboratory Jean Perrin, UMR 8237 CNRS, Paris F-75005, France.
Biochim Biophys Acta Biomembr. 2018 Oct;1860(10):2042-2063. doi: 10.1016/j.bbamem.2018.02.026. Epub 2018 Mar 6.
Most biological molecules contain acido-basic groups that modulate their structure and interactions. A consequence is that pH gradients, local heterogeneities and dynamic variations are used by cells and organisms to drive or regulate specific biological functions including energetic metabolism, vesicular traffic, migration and spatial patterning of tissues in development. While the direct or regulatory role of pH in protein function is well documented, the role of hydrogen and hydroxyl ions in modulating the properties of lipid assemblies such as bilayer membranes is only beginning to be understood. Here, we review approaches using artificial lipid vesicles that have been instrumental in providing an understanding of the influence of pH gradients and local variations on membrane vectorial motional processes: migration, membrane curvature effects promoting global or local deformations, crowding generation by segregative polarization processes. In the case of pH induced local deformations, an extensive theoretical framework is given and an application to a specific biological issue, namely the structure and stability of mitochondrial cristae, is described. This article is part of a Special Issue entitled: Emergence of Complex Behavior in Biomembranes edited by Marjorie Longo.
大多数生物分子都含有酸碱基团,这些基团调节着它们的结构和相互作用。其结果是,pH 梯度、局部异质性和动态变化被细胞和生物用来驱动或调节特定的生物功能,包括能量代谢、囊泡运输、迁移和组织在发育中的空间模式。虽然 pH 值对蛋白质功能的直接或调节作用已有充分的记录,但氢和氢氧离子在调节脂质组装体(如双层膜)的性质方面的作用才刚刚开始被理解。在这里,我们回顾了使用人工脂质囊泡的方法,这些方法对于理解 pH 梯度和局部变化对膜向量运动过程(迁移、促进全局或局部变形的膜曲率效应、通过分隔极化过程产生的拥挤)的影响提供了重要的认识。在 pH 诱导的局部变形的情况下,给出了广泛的理论框架,并将其应用于一个特定的生物学问题,即线粒体嵴的结构和稳定性。本文是由 Marjorie Longo 编辑的题为“生物膜中复杂行为的出现”的特刊的一部分。