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首页> 外文期刊>Journal of Medicinal Chemistry >A comprehensive study of the active site residues of DT-diaphorase: rational design of benzimidazolediones as DT-diaphorase substrates.
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A comprehensive study of the active site residues of DT-diaphorase: rational design of benzimidazolediones as DT-diaphorase substrates.

机译:DT-黄递酶活性位点残基的全面研究:苯并咪唑二酮类作为DT-黄递酶底物的合理设计。

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摘要

A series of quinone substrates were modeled into the active site of human DT-diaphorase and minimized. Correlation of these models with the substrate specificity k(cat)/K(m) provided insights into the structural requirements of quinone substrates. The W105, F106, and H194 residues can influence the position of the quinone substrate in the active site resulting in formation of one of the two possible Michael anions resulting from hydride transfer from FADH(2). Electron withdrawing groups on the substrate can stabilize these anions resulting in excellent substrate specificity. Inspection of models indicated that the W-105 and F-106 residues form parallel walls that will accommodate large polycyclic substrates. Thus excellent polycyclic substrates of DT-diaphorase were designed. However, the placement of tetrahedral centers on these polycyclic substrates interfered with the W-105 and the F-106 residues resulting in their exclusion from the active site. The histidine (H194) residue permits recognition of substrate enantiomers as a result of hydrogen bonding interactions. As a result of this study, it will be possible to design poor to excellent substrates of DT-diaphorase and take advantage of varying levels of this enzyme in histologically different cancers.
机译:将一系列醌底物建模到人DT-黄递酶的活性位点中并最小化。这些模型与底物特异性k(cat)/ K(m)的相关性提供了对醌底物结构要求的见识。 W105,F106和H194残基会影响醌底物在活性位点中的位置,导致由氢化物从FADH(2)转移而导致形成两种可能的迈克尔阴离子之一。底物上的吸电子基团可以稳定这些阴离子,从而获得优异的底物特异性。模型检查表明,W-105和F-106残留物形成平行壁,可容纳大型多环基质。因此,设计了优异的DT-心肌黄递酶多环底物。但是,在这些多环底物上四面体中心的位置干扰了W-105和F-106残基,导致它们被排除在活性位点之外。组氨酸(H194)残基可通过氢键相互作用识别底物对映体。这项研究的结果是,有可能设计出差的至极好的DT-心肌黄递酶底物,并在组织学不同的癌症中利用这种酶的不同水平。

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