Shirai Nobu C, Kikuchi Macoto
Center for Information Technologies and Networks, Mie University, Tsu, Mie 514-8507, Japan.
Cybermedia Center, Osaka University, Toyonaka, Osaka 560-0043, Japan.
J Chem Phys. 2016 Feb 7;144(5):055101. doi: 10.1063/1.4941054.
α-synuclein (α-syn) is an intrinsically disordered protein which is considered to be one of the causes of Parkinson's disease. This protein forms amyloid fibrils when in a highly concentrated solution. The fibril formation of α-syn is induced not only by increases in α-syn concentration but also by macromolecular crowding. In order to investigate the coupled effect of the intrinsic disorder of α-syn and macromolecular crowding, we construct a lattice gas model of α-syn in contact with a crowding agent reservoir based on statistical mechanics. The main assumption is that α-syn can be expressed as coarse-grained particles with internal states coupled with effective volume; and disordered states are modeled by larger particles with larger internal entropy than other states. Thanks to the simplicity of the model, we can exactly calculate the number of conformations of crowding agents, and this enables us to prove that the original grand canonical ensemble with a crowding agent reservoir is mathematically equivalent to a canonical ensemble without crowding agents. In this expression, the effect of macromolecular crowding is absorbed in the internal entropy of disordered states; it is clearly shown that the crowding effect reduces the internal entropy. Based on Monte Carlo simulation, we provide scenarios of crowding-induced fibril formation. We also discuss the recent controversy over the existence of helically folded tetramers of α-syn, and suggest that macromolecular crowding is the key to resolving the controversy.
α-突触核蛋白(α-syn)是一种内在无序的蛋白质,被认为是帕金森病的病因之一。这种蛋白质在高浓度溶液中会形成淀粉样纤维。α-syn的纤维形成不仅由α-syn浓度的增加诱导,还由大分子拥挤诱导。为了研究α-syn的内在无序和大分子拥挤的耦合效应,我们基于统计力学构建了一个与拥挤剂库接触的α-syn晶格气体模型。主要假设是α-syn可以表示为具有与有效体积耦合的内部状态的粗粒化粒子;无序状态由具有比其他状态更大内部熵的更大粒子建模。由于模型的简单性,我们可以精确计算拥挤剂的构象数,这使我们能够证明具有拥挤剂库的原始巨正则系综在数学上等同于没有拥挤剂的正则系综。在此表达式中,大分子拥挤的效应被吸收在无序状态的内部熵中;清楚地表明拥挤效应降低了内部熵。基于蒙特卡罗模拟,我们提供了拥挤诱导纤维形成的情景。我们还讨论了最近关于α-syn螺旋折叠四聚体存在的争议,并表明大分子拥挤是解决该争议的关键。