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基于建模与实验的组合方法进行配体设计:应用于HLA - DR4

Ligand design by a combinatorial approach based on modeling and experiment: application to HLA-DR4.

作者信息

Evensen Erik, Joseph-McCarthy Diane, Weiss Gregory A, Schreiber Stuart L, Karplus Martin

机构信息

Committee on Higher Degrees in Biophysics, Harvard University, Cambridge, MA, USA.

出版信息

J Comput Aided Mol Des. 2007 Jul;21(7):395-418. doi: 10.1007/s10822-007-9119-x. Epub 2007 Jul 27.

Abstract

Combinatorial synthesis and large scale screening methods are being used increasingly in drug discovery, particularly for finding novel lead compounds. Although these "random" methods sample larger areas of chemical space than traditional synthetic approaches, only a relatively small percentage of all possible compounds are practically accessible. It is therefore helpful to select regions of chemical space that have greater likelihood of yielding useful leads. When three-dimensional structural data are available for the target molecule this can be achieved by applying structure-based computational design methods to focus the combinatorial library. This is advantageous over the standard usage of computational methods to design a small number of specific novel ligands, because here computation is employed as part of the combinatorial design process and so is required only to determine a propensity for binding of certain chemical moieties in regions of the target molecule. This paper describes the application of the Multiple Copy Simultaneous Search (MCSS) method, an active site mapping and de novo structure-based design tool, to design a focused combinatorial library for the class II MHC protein HLA-DR4. Methods for the synthesizing and screening the computationally designed library are presented; evidence is provided to show that binding was achieved. Although the structure of the protein-ligand complex could not be determined, experimental results including cross-exclusion of a known HLA-DR4 peptide ligand (HA) by a compound from the library. Computational model building suggest that at least one of the ligands designed and identified by the methods described binds in a mode similar to that of native peptides.

摘要

组合合成和大规模筛选方法在药物研发中越来越多地被使用,尤其是用于寻找新型先导化合物。尽管这些“随机”方法比传统合成方法能覆盖更大的化学空间区域,但实际上所有可能化合物中只有相对较小的比例是可获取的。因此,选择更有可能产生有用先导物的化学空间区域是有帮助的。当目标分子有三维结构数据时,可通过应用基于结构的计算设计方法来聚焦组合文库以实现这一点。这比使用计算方法设计少量特定新型配体的标准用法更具优势,因为在这里计算被用作组合设计过程的一部分,所以只需要确定目标分子区域中某些化学基团的结合倾向。本文描述了多重复同时搜索(MCSS)方法的应用,这是一种活性位点映射和基于从头结构的设计工具,用于为II类主要组织相容性复合体蛋白HLA - DR4设计聚焦组合文库。文中介绍了合成和筛选计算设计文库的方法;提供了证据表明实现了结合。尽管无法确定蛋白质 - 配体复合物的结构,但实验结果包括文库中的一种化合物对已知HLA - DR4肽配体(HA)的交叉排斥。计算模型构建表明,通过所述方法设计和鉴定的至少一种配体以与天然肽相似的模式结合。

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