Biochemistry & Cellular and Molecular Biology, University of Tennessee Knoxville, Knoxville, Tennessee 37996, USA
Program in Biophysics, University of Michigan, Ann Arbor, Michigan 48109, USA
Cold Spring Harb Perspect Biol. 2023 Nov 1;15(11):a041395. doi: 10.1101/cshperspect.a041395.
Several groups have recently reported evidence for the emergence of domains in cell plasma membranes when membrane proteins are organized by ligand binding or assembly of membrane proximal scaffolds. These domains recruit and retain components that favor the liquid-ordered phase, adding to a decades-old literature interrogating the contribution of membrane phase separation in plasma membrane organization and function. Here we propose that both past and present observations are consistent with a model in which membranes have a high compositional susceptibility, arising from their thermodynamic state in a single phase that is close to a miscibility phase transition. This rigorous framework naturally allows for both transient structure in the form of composition fluctuations and long-lived structure in the form of induced domains. In this way, the biological tuning of plasma membrane composition enables a responsive compositional landscape that facilitates and augments cellular biochemistry vital to plasma membrane functions.
最近有几个研究小组报告称,当膜蛋白通过配体结合或膜近端支架组装进行组织时,细胞质膜中会出现结构域。这些结构域募集并保留有利于液态有序相的成分,这增加了几十年来一直在研究的关于膜相分离对质膜组织和功能的贡献的文献。在这里,我们提出,过去和现在的观察结果都与一个模型一致,即在接近混合相变的单一相中,膜具有高的组成敏感性,这是由它们的热力学状态引起的。这个严格的框架自然允许以组成波动的形式出现瞬态结构和以诱导结构域的形式出现的长寿命结构。通过这种方式,质膜组成的生物调节可以实现响应性的组成景观,从而促进和增强对质膜功能至关重要的细胞生物化学。