Baumgart Tobias, Capraro Benjamin R, Zhu Chen, Das Sovan L
Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
Annu Rev Phys Chem. 2011;62:483-506. doi: 10.1146/annurev.physchem.012809.103450.
Research investigating lipid membrane curvature generation and sensing is a rapidly developing frontier in membrane physical chemistry and biophysics. The fast recent progress is based on the discovery of a plethora of proteins involved in coupling membrane shape to cellular membrane function, the design of new quantitative experimental techniques to study aspects of membrane curvature, and the development of analytical theories and simulation techniques that allow a mechanistic interpretation of quantitative measurements. The present review first provides an overview of important classes of membrane proteins for which function is coupled to membrane curvature. We then survey several mechanisms that are assumed to underlie membrane curvature sensing and generation. Finally, we discuss relatively simple thermodynamic/mechanical models that allow quantitative interpretation of experimental observations.
研究脂质膜曲率的产生和感知是膜物理化学和生物物理学中一个快速发展的前沿领域。近期的快速进展基于以下几个方面:发现了大量将膜形状与细胞膜功能相耦合的蛋白质;设计了用于研究膜曲率方面的新定量实验技术;以及开发了能够对定量测量进行机理阐释的分析理论和模拟技术。本综述首先概述了功能与膜曲率相关的重要膜蛋白类别。然后,我们探讨了几种被认为是膜曲率感知和产生基础的机制。最后,我们讨论了能够对实验观察结果进行定量解释的相对简单的热力学/力学模型。