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Chemogenomics of pyridoxal 5′-phosphate dependent enzymes

机译:吡ido醛5'-磷酸依赖性酶的化学基因组学

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Abstract 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. Evolutionarily 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:摘要乙二醛5'-磷酸(PLP)依赖性酶是一个大家族,在氨基酸代谢中起关键作用,并且作为药物靶标越来越受到关注。为了鉴定抑制PLP依赖性酶的化合物,这项工作采用了基于化学基因组学的方法。化学基因组学利用序列和三维结构中编码的信息来定义药效团模型。该分析是在65种高分辨率PLP依赖性酶结构的数据集上进行的,其中包括4种类型的代表成员。在序列结构比较的基础上鉴定了与辅酶或底物结合有关的进化上保守的残基。获得的数据集包含有关每种代表性PLP依赖性酶的底物和辅酶结合位点上保守残基的信息。通过连接辅酶和底物药效基团,产生了双功能药效基团,它们将构成未来开发针对特定PLP依赖性酶的小抑制剂的基础。

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