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用于研究牛胰蛋白酶活性位点的交互式计算机表面图形方法。

Interactive computer surface graphics approach to study of the active site of bovine trypsin.

作者信息

Feldmann R J, Bing D H, Furie B C, Furie B

出版信息

Proc Natl Acad Sci U S A. 1978 Nov;75(11):5409-12. doi: 10.1073/pnas.75.11.5409.

Abstract

A descriptive medium for the presentation of protein structure has been developed and used to evaluate the structure of the active site of bovine trypsin (EC 3.4.21.4). This technique, involving advanced computer graphics technology, permits the facile display of a representation of the molecular surface of proteins of known structure and employs color to code the structural or chemical features of this surface. Benzamidine derivatives were inserted into the benzamidine-binding site of trypsin and the binary inhibitor-trypsin complex was evaluated by using the computer-generated structure. On the basis of qualitative assessments of the contribution of electrostatic and hydrophobic forces to the binding energy associated with complex formation, we made predictions concerning the effects of interaction of benzamidine substituents and amino acid side chains upon the binding energy associated with inhibitor-protein binding. The computer display of the molecular surfaces of the binary complex of substituted benzamidines and trypsin permitted unique insight into the identity and chemical properties of the atoms that participate at the interface of the molecular surfaces of the inhibitor and the protein. The computer-generated molecular surface display can potentially be combined with quantitative definition of the physical forces involved in the interaction of molecular surfaces. This technology should facilitate the study of the structure-activity relationship of substrates, inhibitors, and drugs that bind to proteins of known three-dimensional structure.

摘要

一种用于呈现蛋白质结构的描述性介质已被开发出来,并用于评估牛胰蛋白酶(EC 3.4.21.4)活性位点的结构。这项技术涉及先进的计算机图形技术,能够轻松展示已知结构蛋白质分子表面的表征,并利用颜色对该表面的结构或化学特征进行编码。将苯甲脒衍生物插入胰蛋白酶的苯甲脒结合位点,并使用计算机生成的结构对二元抑制剂 - 胰蛋白酶复合物进行评估。基于对静电和疏水力对与复合物形成相关的结合能贡献的定性评估,我们对苯甲脒取代基与氨基酸侧链相互作用对与抑制剂 - 蛋白质结合相关的结合能的影响进行了预测。取代苯甲脒与胰蛋白酶二元复合物分子表面的计算机显示使我们能够独特地洞察参与抑制剂和蛋白质分子表面界面的原子的身份和化学性质。计算机生成的分子表面显示有可能与分子表面相互作用中涉及的物理力的定量定义相结合。这项技术应有助于研究与已知三维结构蛋白质结合的底物、抑制剂和药物的构效关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0334/392973/55719bff28a4/pnas00021-0173-a.jpg

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