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ProtonationStates of the Tryptophan Synthase InternalAldimine Active Site from Solid-State NMR Spectroscopy: Direct Observationof the Protonated Schiff Base Linkage to Pyridoxal-5′-Phosphate

机译:质子化色氨酸合酶内部状态固态NMR光谱中的Aldimine活性位:直接观察质子席夫碱键与吡y醛5-磷酸的关系

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摘要

The acid–base chemistry that drives catalysis in pyridoxal-5′-phosphate (PLP)-dependent enzymes has been the subject of intense interest and investigation since the initial identification of PLP’s role as a coenzyme in this extensive class of enzymes. It was first proposed over 50 years ago that the initial step in the catalytic cycle is facilitated by a protonated Schiff base form of the holoenzyme in which the linking lysine ε-imine nitrogen, which covalently binds the coenzyme, is protonated. Here we provide the first 15N NMR chemical shift measurements of such a Schiff base linkage in the resting holoenzyme form, the internal aldimine state of tryptophan synthase. Double-resonance experiments confirm the assignment of the Schiff base nitrogen, and additional 13C, 15N, and 31P chemical shift measurements of sites on the PLP coenzyme allow a detailed model of coenzyme protonation states to be established.
机译:自从最初确定PLP在这类广泛的酶中作为辅酶的作用以来,引起吡ido醛5'-磷酸(PLP)依赖性酶催化作用的酸碱化学方法就引起了广泛的关注和研究。 50多年前首次提出,全酶的质子化席夫碱形式促进了催化循环的第一步,其中共价键合辅酶的赖氨酸ε-亚胺氮被质子化。在这里,我们提供了以静止全酶形式,色氨酸合酶的内部醛亚胺状态存在的此类Schiff碱基键的第一次 15 NMR化学位移测量。双共振实验确认了席夫碱氮的分配,另外还进行了站点的 13 C, 15 N和 31 P化学位移测量在PLP辅酶上,可以建立辅酶质子化状态的详细模型。

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