首页> 外文期刊>Journal of Molecular Biology >CONTRIBUTIONS OF TRYPTOPHAN 24 AND GLUTAMATE 30 TO BINDING LONG-LIVED WATER MOLECULES IN THE TERNARY COMPLEX OF HUMAN DIHYDROFOLATE REDUCTASE WITH METHOTREXATE AND NADPH STUDIED BY SITE-DIRECTED MUTAGENESIS AND NUCLEAR MAGNETIC RESONANCE SPECTROSCOPY
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CONTRIBUTIONS OF TRYPTOPHAN 24 AND GLUTAMATE 30 TO BINDING LONG-LIVED WATER MOLECULES IN THE TERNARY COMPLEX OF HUMAN DIHYDROFOLATE REDUCTASE WITH METHOTREXATE AND NADPH STUDIED BY SITE-DIRECTED MUTAGENESIS AND NUCLEAR MAGNETIC RESONANCE SPECTROSCOPY

机译:TRYPTOPHAN 24和谷氨酰胺30对人双叶酸还原酶与甲酸酯和NADPH的三元络合物中长寿水分子的结合,通过位点定向诱变和核磁共振波谱研究

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Previous NMR studies on the ternary complex of human dihydrofolate reductase (hDHFR) with methotrexate (MTX) and NADPH detected six long-lived bound water molecules. Two of the water molecules, WatA and WatB, stabilize the structure of the protein while the other four, WatC, WatD, WatE and WatF, are involved in substrate binding and specificity WatE may also act as a proton shuttle during catalysis. Here, the contributions of individual residues to the binding of these water molecules are investigated by performing NMR experiments on ternary complexes of mutant enzymes, W24F, E30A and E30Q. W24 and E30 are conserved residues that form hydrogen bonds with WatE in crystal structures of DHFR. Nuclear Overhauser effects (NOEs) are detected between WatE and the protein in all the mutant complexes, hence WatE still has a long lifetime bound to the complex when one of its hydrogen-bonding partners is deleted or altered by mutagenesis. The NOEs for WatE are much weaker, however, in the mutants than in wild-type. The NOEs for the other water molecules in and near the active site, WatA, WatC, WatD and WatF, also tend to be weaker in the mutant complexes. Little or no change is apparent in the NOEs for WatB, which is located outside the active site, farthest from the mutated residues. The decreased NOE intensities for the bound water molecules could be caused by changes in the positions and/or lifetimes of the water molecules. Chemical shift and NOE data indicate that the mutants have structures very similar to that of wild-type hDHFR, with possible conformational changes occurring only near the mutated residues. Based on the lack of structural change in the protein and evidence for increased structural fluctuations in the active sites of the mutant enzymes, it is likely that the NOE changes are caused, at least in part, by decreases in the lifetimes of the bound water molecules. [References: 42]
机译:先前对人二氢叶酸还原酶(hDHFR)与甲氨蝶呤(MTX)和NADPH的三元复合物的NMR研究检测到六个长寿的结合水分子。水分子中的两个,WatA和WatB,稳定蛋白质的结构,而另外四个,WatC,WatD,WatE和WatF,与底物结合,特异性WatE在催化过程中也可以作为质子穿梭。在这里,通过对突变酶W24F,E30A和E30Q的三元复合物进行NMR实验,研究了各个残基对这些水分子结合的贡献。 W24和E30是在DHFR晶体结构中与WatE形成氢键的保守残基。在所有突变体复合物中,WatE和蛋白质之间都检测到了核Overhauser效应(NOE),因此,当通过诱变删除或改变其氢键伙伴之一时,WatE与该复合物的结合寿命仍然很长。但是,在突变体中,WatE的NOE要弱于野生型。活性位点及其附近的其他水分子(WatA,WatC,WatD和WatF)的NOE在突变体复合物中也较弱。 WatB的NOE几乎没有变化,甚至没有变化,它位于活性位点之外,距离突变残基最远。结合的水分子的NOE强度降低可能是由水分子的位置和/或寿命变化引起的。化学位移和NOE数据表明,突变体的结构与野生型hDHFR非常相似,可能的构象变化仅发生在突变残基附近。基于蛋白质缺乏结构变化和突变酶活性位点结构波动增加的证据,NOE变化很可能至少部分是由于结合水分子寿命的缩短引起的。 [参考:42]

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