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理解结合亲和力:一系列疏水修饰的苯甲脒氯化物抑制剂与胰蛋白酶结合的等温滴定量热法/分子动力学联合研究

Understanding binding affinity: a combined isothermal titration calorimetry/molecular dynamics study of the binding of a series of hydrophobically modified benzamidinium chloride inhibitors to trypsin.

作者信息

Talhout Reinskje, Villa Alessandra, Mark Alan E, Engberts Jan B F N

机构信息

Physical Organic Chemistry Unit, Stratingh Institute, University of Groningen, Nijenborgh 4, 9747 AG Groningen, The Netherlands.

出版信息

J Am Chem Soc. 2003 Sep 3;125(35):10570-9. doi: 10.1021/ja034676g.

Abstract

The binding of a series of p-alkylbenzamidinium chloride inhibitors to the serine proteinase trypsin over a range of temperatures has been studied using isothermal titration (micro)calorimetry and molecular dynamics simulation techniques. The inhibitors have small structural variations at the para position of the benzamidinium ion. They show small differences in relative binding affinity but large compensating differences in enthalpy and entropy. Binding affinity decreases with increased branching at the first carbon but increases with increasing the length of a linear alkyl substituent, suggesting that steric hindrance and hydrophobic interactions play dominant roles in binding. Structural analysis showed that the backbone of the enzyme was unaffected by the change of the para substituent. In addition, binding does not correlate strongly with octanol/water partition data. To further characterize this system, the change in the heat capacity on binding, the change in solvent-accessible surface area on binding, the effect of inhibitor binding on the hydration of the active site, the pK(a) of His57, and interactions within the catalytic triad have been investigated. Although the changes in inhibitor structure are small, it is demonstrated that simple concepts such as steric hindrance, hydrophobicity, and buried surface area are insufficient to explain the binding data. Other factors, such as access to the binding site and the cost of dehydration of the active site, are of equal or greater importance.

摘要

利用等温滴定量热法和分子动力学模拟技术,研究了一系列对烷基苯甲脒氯化物抑制剂在不同温度下与丝氨酸蛋白酶胰蛋白酶的结合情况。这些抑制剂在苯甲脒离子的对位具有微小的结构差异。它们在相对结合亲和力上表现出微小差异,但在焓和熵方面存在较大的补偿差异。结合亲和力随着第一个碳原子上支链的增加而降低,但随着线性烷基取代基长度的增加而增加,这表明空间位阻和疏水相互作用在结合中起主导作用。结构分析表明,酶的主链不受对位取代基变化的影响。此外,结合与正辛醇/水分配数据没有很强的相关性。为了进一步表征该系统,研究了结合时的热容变化、结合时溶剂可及表面积的变化、抑制剂结合对活性部位水合作用的影响、His57的pK(a)以及催化三联体内的相互作用。尽管抑制剂结构的变化很小,但结果表明,诸如空间位阻、疏水性和埋藏表面积等简单概念不足以解释结合数据。其他因素,如进入结合位点的难易程度和活性部位脱水的代价,具有同等或更大的重要性。

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