a Department of Chemical and Biological Engineering , Colorado State University , 1370 Campus Delivery, Fort Collins , CO 80523-1370 , USA.
J Biomol Struct Dyn. 2017 Jul;35(9):1990-2002. doi: 10.1080/07391102.2016.1204364. Epub 2016 Jul 8.
Pretreating biomass using ionic liquids (ILs) can decrease cellulose crystallinity and lead to improved hydrolysis. However, cellulase activity is often reduced in even low concentrations of ILs, necessitating complete washing between pretreatment and hydrolysis steps. To better understand how ILs interact with enzymes at the molecular scale, endoglucanase E1 from Acidothermus cellulolyticus was simulated in aqueous 1-ethyl-3-methylimidazolium chloride ([Emim]Cl). Homologs with differing surface charge were also simulated to assess the role of electrostatic interactions between the enzyme and the surrounding solvent. Chloride anions interacted with the enzyme surface via Coulomb or hydrogen bond interactions, while [Emim] cations primarily formed hydrophobic or ring stacking interactions. Cations strongly associated with the binding pocket of E1, potentially inhibiting the binding of substrate molecules. At elevated temperatures, cations also disrupted native hydrophobic contacts and caused some loss of secondary structure. These observations suggested that both cations and anions could influence enzyme behavior and that denaturing and inhibitory interactions might both be important in aqueous IL systems.
使用离子液体(ILs)预处理生物质可以降低纤维素结晶度,从而提高水解效率。然而,即使在低浓度的 ILs 中,纤维素酶的活性也常常会降低,因此在预处理和水解步骤之间需要进行彻底的洗涤。为了更好地了解 ILs 在分子水平上如何与酶相互作用,模拟了来自嗜热纤维梭菌的内切葡聚糖酶 E1 在水合 1-乙基-3-甲基咪唑氯盐 ([Emim]Cl) 中的情况。还模拟了具有不同表面电荷的同源物,以评估酶和周围溶剂之间的静电相互作用的作用。氯离子通过库仑或氢键相互作用与酶表面相互作用,而 [Emim] 阳离子主要形成疏水性或环堆叠相互作用。阳离子与 E1 的结合口袋强烈结合,可能会抑制底物分子的结合。在较高温度下,阳离子还破坏了天然的疏水接触,并导致一些二级结构的损失。这些观察结果表明,阳离子和阴离子都可能影响酶的行为,变性和抑制相互作用在含水 IL 系统中可能都很重要。