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采用泊松-玻尔兹曼方法研究含磷抑制剂与嗜热菌蛋白酶的结合。

Binding of phosphorus-containing inhibitors to thermolysin studied by the Poisson-Boltzmann method.

作者信息

Shen J, Wendoloski J

机构信息

Sterling Winthrop Inc., Collegeville, Pennsylvania 19426-0900, USA.

出版信息

Protein Sci. 1995 Mar;4(3):373-81. doi: 10.1002/pro.5560040303.

Abstract

Zinc endopeptidase thermolysin can be inhibited by a series of phosphorus-containing peptide analogues, Cbz-Gly-psi (PO2)-X-Leu-Y-R (ZGp(X)L(y)R), where X = NH, O, or CH2; Y = NH or O; R = Leu, Ala, Gly, Phe, H, or CH3. The affinity correlation as well as an X-ray crystallography study suggest that these inhibitors bind to thermolysin in an identical mode. In this work, we calculate the electrostatic binding free energies for a series of 13 phosphorus-containing inhibitors with modifications at X, Y, and R moieties using finite difference solution to the Poisson-Boltzmann equation. A method has been developed to include the solvation entropy changes due to binding different ligands to a macromolecule. We demonstrate that the electrostatic energy and empirically derived solvation entropy can account for most of the binding energy differences in this series. By analyzing the binding contribution from individual residues, we show that the energy of a hydrogen bond is not confined to the donor and acceptor. In particular, the positive charges on Zn and Arg 203, which are not the acceptors, contribute significantly to the hydrogen bonds between two amides of ZGpLL and the thermolysin.

摘要

锌内肽酶嗜热菌蛋白酶可被一系列含磷肽类似物Cbz-Gly-ψ(PO2)-X-Leu-Y-R(ZGp(X)L(y)R)抑制,其中X = NH、O或CH2;Y = NH或O;R = Leu、Ala、Gly、Phe、H或CH3。亲和力相关性以及X射线晶体学研究表明,这些抑制剂以相同模式与嗜热菌蛋白酶结合。在这项工作中,我们使用泊松-玻尔兹曼方程的有限差分法计算了一系列13种在X、Y和R部分有修饰的含磷抑制剂的静电结合自由能。已开发出一种方法来纳入由于将不同配体结合到大分子上而导致的溶剂化熵变化。我们证明,静电能和根据经验得出的溶剂化熵可以解释该系列中大部分的结合能差异。通过分析各个残基的结合贡献,我们表明氢键的能量并不局限于供体和受体。特别是,并非受体的Zn和Arg 203上的正电荷对ZGpLL的两个酰胺与嗜热菌蛋白酶之间的氢键有显著贡献。

相似文献

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Structures of two thermolysin-inhibitor complexes that differ by a single hydrogen bond.
Science. 1987 Jan 30;235(4788):571-4. doi: 10.1126/science.3810156.

本文引用的文献

1
Hydrogen bonding, hydrophobicity, packing, and protein folding.氢键、疏水性、堆积作用与蛋白质折叠
Annu Rev Biophys Biomol Struct. 1993;22:381-415. doi: 10.1146/annurev.bb.22.060193.002121.
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Biophysical tools for structure-based drug design.用于基于结构的药物设计的生物物理工具。
Pharmacol Ther. 1993 Nov;60(2):169-83. doi: 10.1016/0163-7258(93)90005-x.
5
Structures of two thermolysin-inhibitor complexes that differ by a single hydrogen bond.
Science. 1987 Jan 30;235(4788):571-4. doi: 10.1126/science.3810156.
6
Evaluation of intrinsic binding energy from a hydrogen bonding group in an enzyme inhibitor.
Science. 1987 Jan 30;235(4788):569-71. doi: 10.1126/science.3810155.
10
Binding energetics of phosphorus-containing inhibitors of thermolysin.
Biochemistry. 1989 Jun 13;28(12):4948-51. doi: 10.1021/bi00438a006.

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