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Molecular basis for catalysis and substrate-mediated cellular stabilization of human tryptophan 2,3-dioxygenase

机译:用于催化的分子基础和底物介导的人色氨酸的细胞稳定化2,3-二恶英酶

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Tryptophan 2,3-dioxygenase (TDO) and indoleamine 2,3-dioxygenase (IDO) play a central role in tryptophan metabolism and are involved in many cellular and disease processes. Here we report the crystal structure of human TDO (hTDO) in a ternary complex with the substrates L-Trp and O2 and in a binary complex with the product N-formylkynurenine (NFK), defining for the first time the binding modes of both substrates and the product of this enzyme. The structure indicates that the dioxygenation reaction is initiated by a direct attack of O2 on the C2 atom of the L-Trp indole ring. The structure also reveals an exo binding site for L-Trp, located ~42 ? from the active site and formed by residues conserved among tryptophan-auxotrophic TDOs. Biochemical and cellular studies indicate that Trp binding at this exo site does not affect enzyme catalysis but instead it retards the degradation of hTDO through the ubiquitin-dependent proteasomal pathway. This exo site may therefore provide a novel L-Trp-mediated regulation mechanism for cellular degradation of hTDO, which may have important implications in human diseases.
机译:色氨酸2,3-二氧化根酶(TDO)和吲哚胺2,3-二恶英酶(IDO)在色氨酸新陈代谢中发挥着核心作用,并且参与了许多细胞和疾病过程。在这里,我们将人TDO(HTDO)的晶体结构与底物L-TRP和O 2和与产物N-甲酰脲烯酮(NFK)的二元络合物报告,定义了两个基板的粘合模式的第一次和这种酶的产物。该结构表明二氧化反应通过O 2的直接攻击在L-TRP吲哚环的C2原子上引发。该结构还揭示了L-TRP的EXO结合位点,位于〜42?从活性位点和由残留物形成的色氨酸 - 营养营养TDOS。生物化学和细胞研究表明,在该EXO位点的TRP结合不会影响酶催化,而是通过泛素依赖于泛素依赖性蛋白质途径延迟了HTDO的降解。因此,该EXO位点可以为HTDO的细胞降解提供新的L-TRP介导的调节机制,这可能对人类疾病具有重要意义。

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