首页> 外文期刊>Acta crystallographica, Section F. Structural biology and crystallization communications >Structures of Saccharomyces cerevisiae D-arabinose dehydrogenase Ara1 and its complex with NADPH: implications for cofactor-assisted substrate recognition
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Structures of Saccharomyces cerevisiae D-arabinose dehydrogenase Ara1 and its complex with NADPH: implications for cofactor-assisted substrate recognition

机译:酿酒酵母D-阿拉伯糖脱氢酶Ara1的结构及其与NADPH的复合物:对辅因子辅助底物识别的影响

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摘要

The primary role of yeast Ara1, previously mis-annotated as a D-arabinose dehydrogenase, is to catalyze the reduction of a variety of toxic alpha,beta-dicarbonyl compounds using NADPH as a cofactor at physiological pH levels. Here, crystal structures of Ara1 in apo and NADPH-complexed forms are presented at 2.10 and 2.00 angstrom resolution, respectively. Ara1 exists as a homodimer, each subunit of which adopts an (alpha/beta)(8)-barrel structure and has a highly conserved cofactorbinding pocket. Structural comparison revealed that induced fit upon NADPH binding yielded an intact active-site pocket that recognizes the substrate. Moreover, the crystal structures combined with computational simulation defined an open substrate-binding site to accommodate various substrates that possess a dicarbonyl group.
机译:以前被误解为D-阿拉伯糖脱氢酶的酵母Ara1的主要作用是在生理pH值下使用NADPH作为辅因子催化多种有毒α,β-二羰基化合物的还原。在这里,载脂蛋白和NADPH复合形式的Ara1的晶体结构分别以2.10和2.00埃的分辨率呈现。 Ara1以同型二聚体的形式存在,其每个亚基均采用(α/β)(8)-桶状结构,并具有高度保守的辅因子结合袋。结构比较表明,NADPH结合后的诱导拟合产生了一个识别底物的完整活性位点袋。此外,晶体结构与计算模拟相结合定义了开放的底物结合位点,以容纳具有二羰基的各种底物。

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