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Aqueous ionic liquids redistribute local enzyme stability via long-range perturbation pathways

机译:水性离子液体通过远程扰动途径重新分配局部酶稳定性

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摘要

Ionic liquids (IL) and aqueous ionic liquids (aIL) are attractive (co–)solvents for biocatalysis due to their unique properties. On the other hand, the incubation of enzymes in IL or aIL often reduces enzyme activity. Recent studies proposed various aIL-induced effects to explain the reduction, classified as direct effects, e.g., local dehydration or competitive inhibition, and indirect effects, e.g., structural perturbations or disturbed catalytic site integrity. However, the molecular origin of indirect effects has largely remained elusive. Here we show by multi-μs long molecular dynamics simulations, free energy computations, and rigidity analyses that aIL favorably interact with specific residues of Bacillus subtilis Lipase A (BsLipA) and modify the local structural stability of this model enzyme by inducing long-range perturbations of noncovalent interactions. The perturbations percolate over neighboring residues and eventually affect the catalytic site and the buried protein core. Validation against a complete experimental site saturation mutagenesis library of BsLipA (3620 variants) reveals that the residues of the perturbation pathways are distinguished sequence positions where substitutions highly likely yield significantly improved residual activity. Our results demonstrate that identifying these perturbation pathways and specific IL ion-residue interactions there effectively predicts focused variant libraries with improved aIL tolerance.
机译:离子液体(IL)和水离子液体(AIL)是由于其独特性质的生物分析的吸引力(共)溶剂。另一方面,IL或AIL中酶的孵育通常会降低酶活性。最近的研究提出了各种AIL诱导的效果来解释减少,分类为直接效应,例如局部脱水或竞争性抑制,以及间接效应,例如结构扰动或受干扰的催化位的完整性。然而,间接效应的分子起源在很大程度上保持难以捉摸。在这里,我们通过多μs长的分子动力学模拟,自由能量计算和刚性分析,即AIL有利地与枯草芽孢杆菌脂肪酶A(Bslipa)的特定残留物相互作用,并通过诱导远程扰动来改变该模型酶的局部结构稳定性非价相互作用。扰动渗透在相邻的残留物上并最终影响催化位点和掩埋的蛋白质核心。针对BSLIPA(3620变体)的完整实验现场饱和诱变诱变文库的验证表明,扰动途径的残留物是区分序列位置,其中具有高可能产量的取代显着改善残余活性。我们的结果表明,鉴定这些扰动途径和特定的IL离子残基相互作用有效地预测具有改善的耐受性的聚焦变体文库。

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