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丝氨酸内肽酶-蛋白质抑制剂相互作用的亲和力和特异性。基于X射线晶体学结构的经验自由能计算。

Affinity and specificity of serine endopeptidase-protein inhibitor interactions. Empirical free energy calculations based on X-ray crystallographic structures.

作者信息

Krystek S, Stouch T, Novotny J

机构信息

Department of Macromolecular Modeling, Bristol-Myers Squibb Research Institute, Princeton, NJ 08543-4000.

出版信息

J Mol Biol. 1993 Dec 5;234(3):661-79. doi: 10.1006/jmbi.1993.1619.

Abstract

An empirical function was used to calculate free energy change (delta G) of complex formation between the following inhibitors and enzymes: Kunitz inhibitor (BPTI) with trypsin, trypsinogen and kallikrein; turkey ovomucoid 3rd domain (OMTKY3) with alpha-chymotrypsin and the Streptomyces griseus protease B; the potato chymotrypsin inhibitor with the protease B; and the barely chymotrypsin inhibitor and eglin-c with subtilisin and thermitase. Using X-ray coordinates of the nine complexes, we estimated the contributions that hydrophobic effect, electrostatic interactions and side-chain conformational entropy make towards the stability of the complexes. The calculated delta G values showed good agreement with the experimentally measured ones, the only exception being the kallikrein/BPTI complex whose X-ray structure was solved at an exceptionally low pH. In complexes with different enzymes, the same inhibitor residues contributed identically towards complex formation (delta G(residue) Spearman rank correlation coefficient 0.7 to 1.0). The most productive enzyme-contacting residues in OMTKY3, eglin-c, and the chymotrypsin inhibitors were found in analogous positions on their respective binding loops; thus, our calculations identified a functional (energetic) motif that parallels the well-known structural similarity of the binding loops. The delta G values calculated for BPTI complexed with trypsin (-21.7 kcal) and trypsinogen (-23.4 kcal) were similar and close to the experimental delta G value of the trypsin/BPTI complex (-18.1 kcal), lending support to the suggestion that the 10(7) difference in the observed stabilities (KA) of these two complexes reflects the energetic cost of conformational changes induced in trypsinogen during the pre-equilibrium stages of complex formation. In almost all of the complexes studied, the stabilization free energy contributed by the inhibitors was larger than that donated by the enzymes. In the trypsin-BPTI complex, the calculated delta G contribution of the amino group from the BPTI residue Lys15 (9.7 kcal) was somewhat higher than that arrived at in experiments with semisynthetic inhibitor analogs (7.5 kcal). In OMTKY3, different binding loop residues are known to affect differently the binding (delta delta G) to alpha-chymotrypsin and protease B; a good qualitative agreement was found between the calculated delta G(residue) estimates and the experimental delta delta G data (correlation coefficient 0.7). Large variations were observed in local surface complementarity and related interfacial volume in the two OMTKY3 complexes (by 20 to 60% for some side-chains).(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

使用一个经验函数来计算以下抑制剂与酶之间形成复合物的自由能变化(ΔG):库尼茨抑制剂(BPTI)与胰蛋白酶、胰蛋白酶原和激肽释放酶;火鸡卵类粘蛋白第三结构域(OMTKY3)与α-胰凝乳蛋白酶和灰色链霉菌蛋白酶B;马铃薯胰凝乳蛋白酶抑制剂与蛋白酶B;以及大麦胰凝乳蛋白酶抑制剂和依格林 - c与枯草杆菌蛋白酶和嗜热菌蛋白酶。利用九个复合物的X射线坐标,我们估算了疏水效应、静电相互作用和侧链构象熵对复合物稳定性的贡献。计算得到的ΔG值与实验测量值吻合良好,唯一的例外是激肽释放酶/BPTI复合物,其X射线结构是在极低pH值下解析的。在与不同酶形成的复合物中,相同的抑制剂残基对复合物形成的贡献相同(ΔG(残基)斯皮尔曼等级相关系数为0.7至1.0)。在OMTKY3、依格林 - c和胰凝乳蛋白酶抑制剂中,最有效的与酶接触的残基位于各自结合环的类似位置;因此,我们的计算确定了一个功能(能量)基序,它与结合环众所周知的结构相似性相对应。计算得到的BPTI与胰蛋白酶(-21.7千卡)和胰蛋白酶原(-23.4千卡)形成复合物的ΔG值相似,且接近胰蛋白酶/BPTI复合物的实验ΔG值(-18.1千卡),这支持了这样一种观点,即这两种复合物观察到的稳定性(KA)相差10^7反映了复合物形成预平衡阶段胰蛋白酶原中诱导的构象变化的能量成本。在几乎所有研究的复合物中,抑制剂贡献的稳定自由能大于酶贡献的自由能。在胰蛋白酶 - BPTI复合物中,BPTI残基Lys15的氨基计算得到的ΔG贡献(9.7千卡)略高于半合成抑制剂类似物实验得到的值(7.5千卡)。在OMTKY3中,已知不同的结合环残基对与α-胰凝乳蛋白酶和蛋白酶B的结合(ΔΔG)影响不同;计算得到的ΔG(残基)估计值与实验ΔΔG数据之间发现了良好的定性一致性(相关系数0.7)。在两个OMTKY3复合物中,观察到局部表面互补性和相关界面体积有很大差异(某些侧链相差20%至60%)。

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