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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >pH dependency of ligand binding to cellobiohydrolase 1 (Cel7A) - Affinity, selectivity and inhibition for designed propranolol analogues
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pH dependency of ligand binding to cellobiohydrolase 1 (Cel7A) - Affinity, selectivity and inhibition for designed propranolol analogues

机译:配体与纤维二糖水解酶1(Cel7A)结合的pH依赖性-设计的普萘洛尔类似物的亲和性,选择性和抑制性

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The affinity and enantioselectivity have been determined for designed propranolol derivatives as ligands for Cel7A by capillary electrophoresis (CE) at pH 7.0. These results have been compared to measurements at pH 5.0. In agreement with previous studies, the affinity increased at the higher pH. However, the affinity was not as dependent of the ligand structure at pH 7.0 as at pH 5.0, and the selectivity was generally decreased. Instead, at pH 7.0, the changes in binding were mainly dependent on the presence of additional dihydroxyl groups, indicating an increased importance of the electrostatic interactions. To evaluate the pH dependent variations in binding, changes in both the ligand and in the enzyme had to be taken into account. To ensure that the ligands had the same charge in all measurements, pKa-values of all compounds were determined. The ligand-protein interaction has also been studied by inhibition experiments at both pHs to evaluate the specific binding to the active site when competing with the substrate p-nitrophenyl lactoside (pNPL). With support of docking computations we propose a hypothesis on the effect of the ligand structure and pH dependency of the binding and selectivity of amino alcohols to Cel7A. (c) 2006 Elsevier B.V. All rights reserved.
机译:通过毛细管电泳(CE)在pH 7.0下,已确定设计好的普萘洛尔衍生物作为Cel7A的配体的亲和力和对映选择性。将这些结果与pH 5.0下的测量结果进行了比较。与先前的研究一致,亲和力在较高的pH下增加。然而,在pH 7.0时,亲和力不像在pH 5.0时那样依赖于配体结构,并且选择性通常降低。相反,在pH 7.0时,结合的变化主要取决于其他二羟基的存在,表明静电相互作用的重要性增加。为了评估结合中pH依赖性变化,必须考虑配体和酶的变化。为确保配体在所有测量中均具有相同的电荷,确定所有化合物的pKa值。还通过在两个pH下的抑制实验研究了配体-蛋白质相互作用,以评估与底物对硝基苯基乳糖苷(pNPL)竞争时与活性位点的特异性结合。在对接计算的支持下,我们提出了关于配体结构的影响以及氨基醇对Cel7A的结合和选择性的pH依赖性的假设。 (c)2006 Elsevier B.V.保留所有权利。

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