Process and Product Development, Amgen Inc. Seattle, Washington 98119, USA.
Protein Sci. 2011 Mar;20(3):580-7. doi: 10.1002/pro.591.
Specific-ion effects are ubiquitous in nature; however, their underlying mechanisms remain elusive. Although Hofmeister-ion effects on proteins are observed at higher (>0.3 M) salt concentrations, in dilute (<0.1 M) salt solutions nonspecific electrostatic screening is considered to be dominant. Here, using effective charge (Q*) measurements of hen-egg white lysozyme (HEWL) as a direct and differential measure of ion-association, we experimentally show that anions selectively and preferentially accumulate at the protein surface even at low (<100 mM) salt concentrations. At a given ion normality (50 mN), the HEWL Q* was dependent on anion, but not cation (Li(+), Na(+), K(+), Rb(+), Cs(+), GdnH(+), and Ca(2+)), identity. The Q* decreased in the order F(-) > Cl(-) > Br(-) > NO(3)(-) ∼ I(-) > SCN(-) > ClO(4)(-) ≫ SO(4)(2-), demonstrating progressively greater binding of the monovalent anions to HEWL and also show that the SO(4)(2-) anion, despite being strongly hydrated, interacts directly with the HEWL surface. Under our experimental conditions, we observe a remarkable asymmetry between anions and cations in their interactions with the HEWL surface.
特异性离子效应在自然界中普遍存在;然而,其潜在机制仍难以捉摸。尽管在较高 (>0.3 M)盐浓度下观察到霍夫迈斯特离子对蛋白质的影响,但在稀 (<0.1 M)盐溶液中,认为非特异性静电屏蔽占主导地位。在这里,我们使用鸡卵清溶菌酶 (HEWL) 的有效电荷 (Q*) 测量作为离子缔合的直接和差分测量,实验表明即使在低盐浓度 (<100 mM) 下,阴离子也会选择性地优先积累在蛋白质表面。在给定的离子规度 (50 mN) 下,HEWL 的 Q* 取决于阴离子,而不是阳离子 (Li(+)、Na(+)、K(+)、Rb(+)、Cs(+)、GdnH(+) 和 Ca(2+)),证明单价阴离子与 HEWL 的结合越来越强,并且表明尽管 SO(4)(2-) 阴离子具有强烈的水合作用,但它与 HEWL 表面直接相互作用。在我们的实验条件下,我们观察到阴离子和阳离子与 HEWL 表面相互作用之间存在显著的不对称性。