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Chemogenomics of pyridoxal 5'-phosphate dependent enzymes

机译:吡哆醛5'-磷酸盐依赖性酶的化学素

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摘要

Pyridoxal 5'-phosphate (PLP) dependent enzymes comprise a large family that plays key roles in amino acid metabolism and are acquiring an increasing interest as drug targets. For the identification of compounds inhibiting PLP-dependent enzymes, a chemogenomics-based approach has been adopted in this work. Chemogenomics exploits the information coded in sequences and three-dimensional structures to define pharmacophore models. The analysis was carried out on a dataset of 65 high-resolution PLP-dependent enzyme structures, including representative members of four-fold types. Evolutionary conserved residues relevant to coenzyme or substrate binding were identified on the basis of sequence-structure comparisons. A dataset was obtained containing the information on conserved residues at substrate and coenzyme binding site for each representative PLP-dependent enzyme. By linking coenzyme and substrate pharmacophores, bifunctional pharmacophores were generated that will constitute the basis for future development of small inhibitors targeting specific PLP-dependent enzymes.
机译:吡哆醛5'-磷酸盐(PLP)依赖性酶包含一个大家庭,其在氨基酸代谢中发挥关键作用,并获得随药物目标的越来越兴趣。为了鉴定抑制PLP依赖性酶的化合物,在这项工作中采用了基于化学基因组学的方法。化学素学利用序列和三维结构中编码的信息来定义药物电影模型。该分析是在65个高分辨率PLP依赖性酶结构的数据集上进行的,包括四倍类型的代表性成员。基于序列结构比较鉴定与辅酶或底物结合相关的进化保守残留物。获得数据集,其包含关于每个代表性PLP依赖性酶的底物和辅酶结合位点的保守残留物的信息。通过连接辅酶和底物药物,产生双官能药物,这将构成靶向特异性PLP依赖性酶的小抑制剂的未来发展的基础。

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