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Molecular insights into substrate recognition and catalysis by tryptophan 2,3-dioxygenase

机译:色氨酸2,3-双加氧酶对底物识别和催化的分子见解

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Tryptophan 2,3-dioxygenase (TDO) and indoleamine 2,3-dioxygenase (IDO) constitute an important, yet relatively poorly understood, family of heme-containing enzymes. Here, we report extensive structural and biochemical studies of the Xanthomonas campestris TOO and a related protein SO4414 from Shewanella oneidensis, including the structure at 1.6-angstrom resolution of the catalytically active, ferrous form of TOO in a binary complex with the substrate L-Trp. The carboxylate and ammonium moieties of tryptophan are recognized by electrostatic and hydrogen-bonding interactions with the enzyme and a propionate group of the heme, thus defining the L-stereospecificity. A second, possibly allosteric, L-Trp-binding site is present at the tetramer interface. The sixth coordination site of the heme-iron is vacant, providing a dioxygen-binding site that would also involve interactions with the ammonium moiety Of L-Trp and the amide nitrogen of a glycine residue. The indole ring is positioned correctly for oxygenation at the C2 and C3 atoms. The active site is fully formed only in the binary complex, and biochemical experiments confirm this induced-fit behavior of the enzyme. The active site is completely devoid of water during catalysis, which is supported by our electrochemical studies showing significant stabilization of the enzyme upon substrate binding.
机译:色氨酸2,3-双加氧酶(TDO)和吲哚胺2,3-双加氧酶(IDO)构成了重要的但相对了解较少的含血红素的酶家族。在这里,我们报道了野油菜黄单胞菌TOO和Shewanella oneidensis的相关蛋白SO4414的广泛结构和生化研究,包括在具有底物L-Trp的二元复合物中TOO的催化活性亚铁形式在1.6埃分辨率下的结构。 。色氨酸的羧酸根和铵基通过与酶和血红素的丙酸酯基的静电和氢键相互作用识别,从而定义了L-立体特异性。在四聚体界面上存在第二个可能的变构L-Trp结合位点。血红素铁的第六个配位位点是空的,提供了一个双氧结合位点,该位点还将涉及与L-Trp的铵部分和甘氨酸残基的酰胺氮的相互作用。吲哚环的位置正确,可以在C2和C3原子上进行氧合。活性位点仅在二元复合物中完全形成,生化实验证实了这种酶的诱导拟合行为。该活性位点在催化过程中完全没有水,这由我们的电化学研究支持,该研究表明酶与底物结合后具有显着的稳定性。

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