首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Ternary complex structure of human HGPRTase PRPP Mg2+ and the inhibitor HPP reveals the involvement of the flexible loop in substrate binding.
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Ternary complex structure of human HGPRTase PRPP Mg2+ and the inhibitor HPP reveals the involvement of the flexible loop in substrate binding.

机译:人类HGPRTasePRPPMg2 +和抑制剂HPP的三元复杂结构揭示了柔性环参与底物结合。

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摘要

Site-directed mutagenesis was used to replace Lys68 of the human hypoxanthine phosphoribosyltransferase (HGPRTase) with alanine to exploit this less reactive form of the enzyme to gain additional insights into the structure activity relationship of HGPRTase. Although this substitution resulted in only a minimal (one- to threefold) increase in the Km values for binding pyrophosphate or phosphoribosylpyrophosphate, the catalytic efficiencies (k(cat)/Km) of the forward and reverse reactions were more severely reduced (6- to 30-fold), and the mutant enzyme showed positive cooperativity in binding of alpha-D-5-phosphoribosyl-1-pyrophosphate (PRPP) and nucleotide. The K68A form of the human HGPRTase was cocrystallized with 7-hydroxy [4,3-d] pyrazolo pyrimidine (HPP) and Mg PRPP, and the refined structure reported. The PRPP molecule built into the [(Fo - Fc)phi(calc)] electron density shows atomic interactions between the Mg PRPP and enzyme residues in the pyrophosphate binding domain as well as in a long flexible loop (residues Leu101 to Gly111) that closes over the active site. Loop closure reveals the functional roles for the conserved SY dipeptide of the loop as well as the molecular basis for one form of gouty arthritis (S103R). In addition, the closed loop conformation provides structural information relevant to the mechanism of catalysis in human HGPRTase.
机译:使用定点诱变用丙氨酸替代人次黄嘌呤磷酸核糖基转移酶(HGPRTase)的Lys68,以利用这种反应性较低的酶形式获得关于HGPRTase的结构活性关系的更多见解。尽管这种取代只会导致结合焦磷酸盐或磷酸核糖焦磷酸的Km值仅增加最小(1-3倍),但正向和反向反应的催化效率(k(cat)/ Km)却大大降低了(6- 30倍),并且突变酶在α-D-5-磷酸核糖基-1-焦磷酸(PRPP)和核苷酸的结合中显示出正的协同作用。人HGPRTase的K68A形式与7-羟基[4,3-d]吡唑并嘧啶(HPP)和Mg PRPP共结晶,并报道了其精制结构。 [[Fo-Fc)phi(calc)]电子密度中内置的PRPP分子显示Mg PRPP和焦磷酸结合域中的酶残基之间以及闭合的长柔性环(残基Leu101至Gly111)之间的原子相互作用。在活动站点上。环闭合揭示了环的保守SY二肽的功能作用以及一种痛风性关节炎(S103R)的分子基础。另外,闭环构象提供与人HGPRTase中的催化机理有关的结构信息。

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