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单位点酯酶肽树枝状大分子的分子动力学和对接研究

Molecular dynamics and docking studies of single site esterase peptide dendrimers.

作者信息

Javor Sacha, Reymond Jean-Louis

机构信息

Department of Chemistry and Biochemistry, University of Berne, Freiestrasse 3, CH-3012, Berne, Switzerland.

出版信息

J Org Chem. 2009 May 15;74(10):3665-74. doi: 10.1021/jo802743c.

Abstract

Herein we report the first molecular dynamics and docking study of peptide dendrimers, at the example of dendrimers catalyzing the hydrolysis of acyloxy pyrene trisulfonates in aqueous buffer. Molecular dynamics provide models comparable to the observation by diffusion-NMR showing that the dendrimers exist as conformationally flexible molten globules in aqueous solution. Packing is evidenced by the occurrence of close contacts between topologically distant amino acids in the dendrimer model. Backbone hydrogen bonds predominantly form 2, 3, or 4 residues apart as found in the secondary structures of proteins, however, with lower frequency. The catalytic residues are present at the surface of the dendrimer model at relative positions compatible with binding and esterolysis. Docking of the substrate to low-energy conformations of the dendrimers predicts the formation of dendrimer-substrate complexes with one or two salt bridges between the sulfonate and protonated arginine or histidine residues. Substrate binding in the docked models also involves 4-6 van der Waals contacts. In the catalytic dendrimers RG3 and RMG3 exhibiting a positive dendritic effect, these docking contacts involve the outer dendritic branches. By contrast, in the catalytic dendrimers HG3 or HMG3 where no such effect occurs, the docking contacts are concentrated at the dendritic core. The present investigations provide an unprecedented insight into the molecular dynamics of peptide dendrimers that may be of general significance for other conformationally flexible dendrimers.

摘要

在此,我们以催化酰氧基芘三磺酸盐在水性缓冲液中水解的树枝状聚合物为例,报告了肽树枝状聚合物的首次分子动力学和对接研究。分子动力学提供的模型与扩散核磁共振观察结果相当,表明树枝状聚合物在水溶液中以构象灵活的熔融球状体形式存在。在树枝状聚合物模型中,拓扑距离较远的氨基酸之间出现紧密接触,证明了堆积现象的存在。主链氢键主要在相隔2、3或4个残基处形成,这与蛋白质二级结构中的情况相同,但频率较低。催化残基存在于树枝状聚合物模型的表面,其相对位置与结合和酯解兼容。将底物对接至树枝状聚合物的低能构象预测会形成树枝状聚合物 - 底物复合物,在磺酸盐与质子化的精氨酸或组氨酸残基之间形成一个或两个盐桥。对接模型中的底物结合还涉及4 - 6个范德华接触。在表现出正树枝状效应的催化树枝状聚合物RG3和RMG3中,这些对接接触涉及外部树枝状分支。相比之下,在未出现这种效应的催化树枝状聚合物HG3或HMG3中,对接接触集中在树枝状核心。本研究为肽树枝状聚合物的分子动力学提供了前所未有的见解,这可能对其他构象灵活的树枝状聚合物具有普遍意义。

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