Sengupta Durba, Joshi Manali, Athale Chaitanya A, Chattopadhyay Amitabha
CSIR-National Chemical Laboratory, Pune, India.
Savitribai Phule Pune University, Pune, India.
Methods Cell Biol. 2016;132:429-52. doi: 10.1016/bs.mcb.2015.11.007. Epub 2015 Dec 24.
The functional dynamics of G protein-coupled receptors (GPCRs) encompasses multiple spatiotemporal scales, ranging from femtoseconds to seconds and Ångströms to micrometers. Computational approaches, often in close collaboration with experimental methods, have been invaluable in unraveling GPCR structure and dynamics at these various hierarchical levels. The binding of natural and synthetic ligands to the wild-type and naturally occurring variant receptors have been analyzed by several computational methods. The activation of receptors from the inactive to the active state has been investigated by atomistic simulations and ongoing work on several receptors will help uncover general and receptor-specific mechanisms. The interaction of GPCRs with complex membranes that contain phospholipids and cholesterol have been probed by coarse-grain methods and shown to directly influence receptor association. In this chapter, we discuss computational approaches that have been successful in analyzing each scale of GPCR dynamics. An overview of these approaches will allow a more judicious choice of the appropriate method. We hope that an appreciation of the power of current computational approaches will encourage more critical collaborations. A comprehensive integration of the different approaches over the entire spatiotemporal scales promises to unravel new facets of GPCR function.
G蛋白偶联受体(GPCRs)的功能动力学涵盖多个时空尺度,从飞秒到秒,从埃到微米。计算方法通常与实验方法密切合作,在揭示这些不同层次水平上的GPCR结构和动力学方面发挥了重要作用。天然和合成配体与野生型及天然存在的变体受体的结合已通过多种计算方法进行了分析。通过原子模拟研究了受体从非活性状态到活性状态的激活过程,目前针对几种受体的研究将有助于揭示普遍的和受体特异性的机制。GPCR与含有磷脂和胆固醇的复杂膜的相互作用已通过粗粒度方法进行了探究,并表明其直接影响受体缔合。在本章中,我们将讨论在分析GPCR动力学的每个尺度方面取得成功的计算方法。对这些方法的概述将有助于更明智地选择合适的方法。我们希望对当前计算方法威力的认识将鼓励更多严谨的合作。在整个时空尺度上对不同方法进行全面整合有望揭示GPCR功能的新方面。