Institut de Biotecnologia i Biomedicina, Departament de Bioquímica i Biologia Molecular, Universitat Autònoma de Barcelona, Bellaterra, 08193 Barcelona, Spain.
Biomolecules. 2022 Jul 12;12(7):974. doi: 10.3390/biom12070974.
Intrinsically disordered proteins (IDPs) are essential players in the assembly of biomolecular condensates during liquid-liquid phase separation (LLPS). Disordered regions (IDRs) are significantly exposed to the solvent and, therefore, highly influenced by fluctuations in the microenvironment. Extrinsic factors, such as pH, modify the solubility and disorder state of IDPs, which in turn may impact the formation of liquid condensates. However, little attention has been paid to how the solution pH influences LLPS, despite knowing that this process is context-dependent. Here, we have conducted a large-scale in-silico analysis of pH-dependent solubility and disorder in IDRs known to be involved in LLPS (LLPS-DRs). We found that LLPS-DRs present maximum solubility around physiological pH, where LLPS often occurs, and identified significant differences in solubility and disorder between proteins that can phase-separate by themselves or those that require a partner. We also analyzed the effect of mutations in the resulting solubility profiles of LLPS-DRs and discussed how, as a general trend, LLPS-DRs display physicochemical properties that permit their LLPS at physiologically relevant pHs.
无规则蛋白质(IDPs)是在液-液相分离(LLPS)过程中生物分子凝聚体组装的重要参与者。无规则区域(IDRs)显著暴露于溶剂中,因此受微环境波动的影响很大。外在因素,如 pH 值,会改变 IDPs 的溶解度和无序状态,这反过来可能会影响液体凝聚体的形成。然而,尽管人们知道这个过程是依赖于上下文的,但对于溶液 pH 值如何影响 LLPS 的问题,人们关注甚少。在这里,我们对已知参与 LLPS 的 IDRs(LLPS-DRs)的 pH 依赖性溶解度和无序性进行了大规模的计算分析。我们发现,LLPS-DRs 在接近生理 pH 值时溶解度最高,而 LLPS 通常在此 pH 值下发生,并且在能够自行相分离的蛋白质和需要伴侣的蛋白质之间,溶解度和无序性存在显著差异。我们还分析了 LLPS-DRs 导致的溶解度曲线变化对突变的影响,并讨论了 LLPS-DRs 如何普遍显示出允许其在生理相关 pH 值下进行 LLPS 的物理化学性质。