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Structures of Three Inhibitor Complexes Provide Insight into the Reaction Mechanism of the Human Methylenetetrahydrofoate Dehydrogenase/Cyclohydrolase

机译:三种抑制剂配合物的结构为人类亚甲基四氢叶酸脱氢酶/环水解酶的反应机理提供了见识

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Enzymes involved in tetrahydrofolate metabolism are of particular pharmaceutical interest, as their function is crucial for amino acid and DNA biosynthesis. The crystal structure of the human cytosolic methylenetertrahydrofolate dehydrogenase/cyclohydrolase (DC301) domain of a trifunctional enzyme has been determined previously with a bound NADP cofactor. While the substrate binding site was identified to be localized in a deep and rather hydrophobic cleft at the interface between two protein domains, the unambiguous assignment of catalytic residues was not possible. We succeeded in determining the crystal structures of three ternary DC301/NADP/inhibitor complexes. Investigation of these structures followed by site-directed mutagenesis studies allowed identification of the amino acids involved in catalysis by both enzyme active sites in dehydrogenases. While Lys56 is in a good position for chemical interaction with the substrate analogue, Tyr52 was found stacking against the inhibitors' aromatic rings and hence seems to be more important for proper positioning of the ligand than for catalysis. Also, Ser49 and/or Cys147 were found to possibly act as an activator for water made, are strictly conserved in THF dehydrogenases. On the basis of structural and mutagenesis data, we propose a reaction mechanism for both activities, the dehydrogenase and the cyclohydrolase.
机译:涉及四氢叶酸代谢的酶具有特殊的药用价值,因为它们的功能对于氨基酸和DNA生物合成至关重要。三功能酶的人胞质亚甲基四氢叶酸脱氢酶/环水解酶(DC301)域的晶体结构先前已用结合的NADP辅因子确定。虽然已确定底物结合位点位于两个蛋白质结构域之间的界面处的深处,而不是疏水性裂缝中,但催化残基的明确分配是不可能的。我们成功地确定了三种三元DC301 / NADP /抑制剂配合物的晶体结构。通过对这些结构的研究,然后进行定点诱变研究,可以通过脱氢酶中的两个酶活性位点鉴定参与催化的氨基酸。虽然Lys56处于与底物类似物化学相互作用的良好位置,但发现Tyr52堆积在抑制剂的芳环上,因此似乎对于配体的正确定位比催化更重要。同样,发现Ser49和/或Cys147可能充当制得的水的活化剂,在THF脱氢酶中严格保守。根据结构和诱变数据,我们提出了两种活性的反应机理,即脱氢酶和环水解酶。

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