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首页> 外文期刊>Biochemistry and Cell Biology >Importance of Arg-599 of beta-galactosidase (Escherichia coli) as an anchor for the open conformations of Phe-601 and the active-site loop
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Importance of Arg-599 of beta-galactosidase (Escherichia coli) as an anchor for the open conformations of Phe-601 and the active-site loop

机译:β-半乳糖苷酶(大肠杆菌)的Arg-599作为Phe-601开放构象和活性位点环的锚点的重要性

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摘要

Structural and kinetic data show that Arg-599 of beta-galactosidase plays an important role in anchoring the "open" conformations of both Phe-601 and an active-site loop (residues 794-803). When alanine was substituted for Arg-599, the conformations of Phe-601 and the loop shifted towards the "closed" positions because interactions with the guani-dinium side chain were lost. Also, Phe-601, the loop, and Na~+, which is ligated by the backbone carbonyl of Phe-601, lost structural order, as indicated by large B-factors. IPTG, a substrate analog, restored the conformations of Phe-601 and the loop of R599A-beta-galactosidase to the open state found with IPTG-complexed native enzyme and partially reinstated order. D-Galactonolactone, a transition state analog, restored the closed conformations of R599A-P-galactosidase to those found with D-galactonolactone-complexed native enzyme and completely re-established the order. Substrates and substrate analogs bound R599A-beta-galactosidase with less affinity because the closed conformation does not allow substrate binding and extra energy is required for Phe-601 and the loop to open. In contrast, transition state analog binding, which occurs best when the loop is closed, was several-fold better. The higher energy level of the enzyme substrate complex and the lower energy level of the first transition state means that less activation energy is needed to form the first transition state and thus the rate of the first catalytic step (fa) increased substantially. The rate of the second catalytic step (k_3) decreased, likely because the covalent form is more stabilized than the second transition state when Phe-601 and the loop are closed. The importance of the guanidinium group of Arg-599 was confirmed by restoration of conformation, order, and activity by guanidinium ions.
机译:结构和动力学数据表明,β-半乳糖苷酶的Arg-599在锚定Phe-601和活性位点环(残基794-803)的“开放”构象中起着重要作用。当丙氨酸代替Arg-599时,Phe-601和环的构象移向“封闭”位置,因为失去了与鸟苷-侧链的相互作用。同样,Phe-601,环和被Phe-601的主链羰基连接的Na +失去了结构顺序,如大的B因子所示。 IPTG(一种底物类似物)将Phe-601的构象和R599A-β-半乳糖苷酶的环恢复到IPTG复合的天然酶和部分还原顺序下的打开状态。过渡状态类似物D-半乳糖内酯将R599A-P-半乳糖苷酶的闭合构象恢复为D-半乳糖内酯复合天然酶发现的构象,并完全重建了顺序。底物和底物类似物以较低的亲和力结合R599A-β-半乳糖苷酶,因为封闭的构象不允许底物结合,并且Phe-601和环的打开需要额外的能量。相比之下,过渡状态模拟绑定(闭环时效果最好)好几倍。酶底物复合物的较高能级和第一过渡态的较低能级意味着形成第一过渡态需要较少的活化能,因此第一催化步骤(fa)的速率大大提高。第二个催化步骤(k_3)的速率降低,可能是因为当Phe-601和环闭合时,共价形式比第二个过渡态更稳定。胍基离子的构象,顺序和活性的恢复证实了Arg-599胍基的重要性。

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