Department of Biochemistry, University of Toronto, Toronto, Ontario M5S 1A8, Canada.
J Phys Chem B. 2022 Nov 17;126(45):9222-9245. doi: 10.1021/acs.jpcb.2c06181. Epub 2022 Nov 7.
A theory for sequence-dependent liquid-liquid phase separation (LLPS) of intrinsically disordered proteins (IDPs) in the study of biomolecular condensates is formulated by extending the random phase approximation (RPA) and field-theoretic simulation (FTS) of heteropolymers with spatially long-range Coulomb interactions to include the fundamental effects of short-range, hydrophobic-like interactions between amino acid residues. To this end, short-range effects are modeled by Yukawa interactions between multiple nonelectrostatic charges derived from an eigenvalue decomposition of pairwise residue-residue contact energies. Chain excluded volume is afforded by incompressibility constraints. A mean-field approximation leads to an effective Flory-Huggins χ parameter, which, in conjunction with RPA, accounts for the contact-interaction effects of amino acid composition and the sequence-pattern effects of long-range electrostatics in IDP LLPS, whereas FTS based on the formulation provides full sequence dependence for both short- and long-range interactions. This general approach is illustrated here by applications to variants of a natural IDP in the context of several different amino-acid interaction schemes as well as a set of different model hydrophobic-polar sequences sharing the same composition. Effectiveness of the methodology is verified by coarse-grained explicit-chain molecular dynamics simulations.
提出了一种用于研究生物分子凝聚物中无序蛋白质 (IDP) 序列依赖性液-液相分离 (LLPS) 的理论,该理论通过将具有空间长程库仑相互作用的杂多聚物的随机相位近似 (RPA) 和场论模拟 (FTS) 扩展到包括氨基酸残基之间的短程、类似疏水的相互作用的基本影响。为此,通过从成对残基残基接触能的特征值分解中得出的多个非静电电荷之间的 Yukawa 相互作用来模拟短程效应。不可压缩性约束提供了链排除体积。平均场近似导致有效 Flory-Huggins χ 参数,该参数与 RPA 一起,解释了氨基酸组成的接触相互作用效应和 IDP LLPS 中长程静电的序列模式效应,而基于该公式的 FTS 则为短程和长程相互作用提供了完全的序列依赖性。在这里,通过将其应用于几种不同氨基酸相互作用方案以及一组具有相同组成的不同模型疏水-极性序列中的天然 IDP 变体来说明了这种通用方法。通过粗粒显式链分子动力学模拟验证了该方法的有效性。