Sarkar Susmita, Guha Anku, Narayanan Tharangattu N, Mondal Jagannath
Tata Institute of Fundamental Research, Center for Interdisciplinary Sciences, Hyderabad 500046, India.
J Phys Chem B. 2024 Oct 3;128(39):9436-9446. doi: 10.1021/acs.jpcb.4c05049. Epub 2024 Sep 18.
Natural selection has driven the convergence toward a selected set of osmolytes, endowing them with the necessary efficiency to manage stress arising from salt diversity. This study combines atomistic simulations and experiments to investigate how two osmolytes, glycine and betaine, individually modulate the Hofmeister ion ordering of alkali metal salts (LiCl, KCl, and CsCl) near a charged silica interface. Both osmolytes are found to prevent salt-induced aggregation of the charged entities, yet their mode and degree of relative modulation depend on their intricate interplay with specific salt cations. Betaine's ion-mediated surface interaction maintains Hofmeister ion ordering, whereas glycine alters the relative Hofmeister order of the cation by salt-specific ion desorption from the surface. Experimental validation through surface-enhanced Raman spectroscopy supports these findings, elucidating osmolyte-mediated alterations in interfacial water structures. These observations based on an inorganic interface are reciprocated in amyloid beta 40 dimerization dynamics, highlighting osmolytes' efficacy in mitigating salt-induced aggregation. A molecular analysis suggests that the differential modes of interaction, as found here for glycine and betaine, are prevalent across classes of zwitterionic osmolytes.
自然选择促使生物趋同于一组特定的渗透剂,赋予它们应对盐多样性所产生压力的必要效率。本研究结合了原子模拟和实验,以探究两种渗透剂——甘氨酸和甜菜碱,如何分别调节带电二氧化硅界面附近碱金属盐(LiCl、KCl和CsCl)的霍夫迈斯特离子排序。研究发现,这两种渗透剂均可防止盐诱导的带电实体聚集,但其相对调节的方式和程度取决于它们与特定盐阳离子的复杂相互作用。甜菜碱通过离子介导的表面相互作用维持霍夫迈斯特离子排序,而甘氨酸则通过特定盐离子从表面解吸来改变阳离子的相对霍夫迈斯特顺序。通过表面增强拉曼光谱进行的实验验证支持了这些发现,阐明了渗透剂介导的界面水结构变化。基于无机界面的这些观察结果在淀粉样β-40二聚化动力学中得到了呼应,突出了渗透剂在减轻盐诱导聚集方面的功效。分子分析表明,此处发现的甘氨酸和甜菜碱不同的相互作用模式在两性离子渗透剂类别中普遍存在。