首页> 外文OA文献 >Structural and kinetic evidence that catalytic reaction of human UDP-glucose 6-dehydrogenase involves covalent thiohemiacetal and thioester enzyme intermediates.
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Structural and kinetic evidence that catalytic reaction of human UDP-glucose 6-dehydrogenase involves covalent thiohemiacetal and thioester enzyme intermediates.

机译:结构和动力学证据表明,人UDP-葡萄糖6-脱氢酶的催化反应涉及共价硫代半缩醛和硫酯酶中间体。

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摘要

Biosynthesis of UDP-glucuronic acid by UDP-glucose 6-dehydrogenase (UGDH) occurs through the four-electron oxidation of the UDP-glucose C6 primary alcohol in two NAD(+)-dependent steps. The catalytic reaction of UGDH is thought to involve a Cys nucleophile that promotes formation of a thiohemiacetal enzyme intermediate in the course of the first oxidation step. The thiohemiacetal undergoes further oxidation into a thioester, and hydrolysis of the thioester completes the catalytic cycle. Herein we present crystallographic and kinetic evidence for the human form of UGDH that clarifies participation of covalent catalysis in the enzymatic mechanism. Substitution of the putative catalytic base for water attack on the thioester (Glu(161)) by an incompetent analog (Gln(161)) gave a UGDH variant (E161Q) in which the hydrolysis step had become completely rate-limiting so that a thioester enzyme intermediate accumulated at steady state. By crystallizing E161Q in the presence of 5 mm UDP-glucose and 2 mm NAD(+), we succeeded in trapping a thiohemiacetal enzyme intermediate and determined its structure at 2.3 Å resolution. Cys(276) was covalently modified in the structure, establishing its role as catalytic nucleophile of the reaction. The thiohemiacetal reactive C6 was in a position suitable to become further oxidized by hydride transfer to NAD(+). The proposed catalytic mechanism of human UGDH involves Lys(220) as general base for UDP-glucose alcohol oxidation and for oxyanion stabilization during formation and breakdown of the thiohemiacetal and thioester enzyme intermediates. Water coordinated to Asp(280) deprotonates Cys(276) to function as an aldehyde trap and also provides oxyanion stabilization. Glu(161) is the Brønsted base catalytically promoting the thioester hydrolysis.
机译:UDP-葡萄糖6-脱氢酶(UGDH)通过UDP-葡萄糖C6伯醇的四电子氧化在两个NAD(+)依赖性步骤中进行UDP-葡萄糖醛酸的生物合成。 UGDH的催化反应被认为涉及Cys亲核试剂,该Cys亲核试剂在第一氧化步骤的过程中促进硫半缩醛酶中间体的形成。硫半缩醛进一步氧化成硫酯,并且硫酯的水解完成了催化循环。在这里,我们提出了UGDH人形式的晶体学和动力学证据,阐明了共价催化在酶促机制中的参与。不适合的类似物(Gln(161))取代了对水攻击硫酯(Glu(161))的假定催化碱,得到了UGDH变体(E161Q),其中水解步骤已完全限制了速率,因此硫酯酶中间体稳定积累。通过在5毫米UDP葡萄糖和2毫米NAD(+)存在下使E161Q结晶,我们成功捕获了硫半缩醛酶中间体,并以2.3Å的分辨率确定了其结构。 Cys(276)在结构上被共价修饰,确立了其作为反应亲核试剂的作用。硫半缩醛反应性C6的位置适合通过氢化物转移至NAD(+)进一步氧化。拟议的人类UGDH催化机理涉及Lys(220),作为UDP-葡萄糖醇氧化和硫半缩醛和硫酯酶中间体形成和分解过程中氧阴离子稳定的通用碱。与Asp(280)配位的水使Cys(276)脱质子化,以充当醛阱,并提供氧阴离子稳定作用。 Glu(161)是布朗斯台德碱,可催化促进硫酯水解。

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