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Structure-Based Mutational Studies of Substrate Inhibition of Betaine Aldehyde Dehydrogenase BetB from Staphylococcus aureus

机译:基于结构的金黄色葡萄球菌甜菜碱醛脱氢酶BetB抑制底物的突变研究

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摘要

Inhibition of enzyme activity by high concentrations of substrate and/or cofactor is a general phenomenon demonstrated in many enzymes, including aldehyde dehydrogenases. Here we show that the uncharacterized protein BetB (SA2613) from Staphylococcus aureus is a highly specific betaine aldehyde dehydrogenase, which exhibits substrate inhibition at concentrations of betaine aldehyde as low as 0.15 mM. In contrast, the aldehyde dehydrogenase YdcW from Escherichia coli, which is also active against betaine aldehyde, shows no inhibition by this substrate. Using the crystal structures of BetB and YdcW, we performed a structure-based mutational analysis of BetB and introduced the YdcW residues into the BetB active site. From a total of 32 mutations, those in five residues located in the substrate binding pocket (Val288, Ser290, His448, Tyr450, and Trp456) greatly reduced the substrate inhibition of BetB, whereas the double mutant protein H448F/Y450L demonstrated a complete loss of substrate inhibition. Substrate inhibition was also reduced by mutations of the semiconserved Gly234 (to Ser, Thr, or Ala) located in the BetB NAD+ binding site, suggesting some cooperativity between the cofactor and substrate binding sites. Substrate docking analysis of the BetB and YdcW active sites revealed that the wild-type BetB can bind betaine aldehyde in both productive and nonproductive conformations, whereas only the productive binding mode can be modeled in the active sites of YdcW and the BetB mutant proteins with reduced substrate inhibition. Thus, our results suggest that the molecular mechanism of substrate inhibition of BetB is associated with the nonproductive binding of betaine aldehyde.
机译:高浓度的底物和/或辅因子对酶活性的抑制是在包括醛脱氢酶在内的许多酶中证实的普遍现象。在这里,我们显示了来自金黄色葡萄球菌的未鉴定蛋白BetB(SA2613)是一种高度特异性的甜菜碱醛脱氢酶,在低至0.15 mM的甜菜碱醛浓度下表现出底物抑制作用。相反,来自大肠杆菌的醛脱氢酶YdcW也对甜菜碱醛具有活性,该底物没有抑制作用。使用BetB和YdcW的晶体结构,我们对BetB进行了基于结构的突变分析,并将YdcW残基引入BetB活性位点。在总共32个突变中,位于底物结合口袋中的五个残基中的那些突变(Val288,Ser290,His448,Tyr450和Trp456)大大降低了BetB的底物抑制,而双重突变蛋白H448F / Y450L则完全丧失了BetB。底物抑制。底物抑制也通过位于BetB NAD + 结合位点的半保守Gly234突变(Ser,Thr或Ala)而降低,表明辅因子和底物结合位点之间具有一定的协同性。对BetB和YdcW活性位点的底物对接分析显示,野生型BetB可以在生产和非生产构象中结合甜菜碱醛,而只有生产性结合模式可以在YdcW和BetB突变蛋白的活性位点中建模。底物抑制。因此,我们的结果表明底物抑制BetB的分子机制与甜菜碱醛的非生产性结合有关。

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