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氯离子与一种海洋碱性磷酸酶的pH依赖性结合影响催化作用、活性位点稳定性和二聚体平衡。

pH-Dependent Binding of Chloride to a Marine Alkaline Phosphatase Affects the Catalysis, Active Site Stability, and Dimer Equilibrium.

作者信息

Hjörleifsson Jens G, Ásgeirsson Bjarni

机构信息

Department of Biochemistry, Science Institute, University of Iceland , Dunhagi 3, 107 Reykjavik, Iceland.

出版信息

Biochemistry. 2017 Sep 26;56(38):5075-5089. doi: 10.1021/acs.biochem.7b00690. Epub 2017 Sep 7.

Abstract

The effect of ionic strength on enzyme activity and stability varies considerably between enzymes. Ionic strength is known to affect the catalytic activity of some alkaline phosphatases (APs), such as Escherichia coli AP, but how ions affect APs is debated. Here, we studied the effect of various ions on a cold-adapted AP from Vibrio splendidus (VAP). Previously, we have found that the active form of VAP is extremely unstable at low ionic strengths. Here we show that NaCl increased the activity and stability of VAP and that the effect was pH-dependent in the range of pH 7-10. The activity profile as a function of pH formed two maxima, indicating a possible conformational change. Bringing the pH from the neutral to the alkaline range was accompanied by a large increase in both the K for inorganic phosphate (product inhibition) and the K for p-nitrophenyl phosphate. The activity transitions observed as the pH was varied correlated with structural changes as monitored by tryptophan fluorescence. Thermal and urea-induced inactivation was shown to be accompanied by neither dissociation of the active site metal ions nor dimer dissociation. This would suggest that the inactivation involved subtle changes in active site conformation. Furthermore, the VAP dimer equilibrium was studied for the first time and shown to highly favor dimerization, which was dependent on pH and NaCl concentration. Taken together, the data support a model in which anions bind to some specific acceptor in the active site of VAP, resulting in great stabilization and catalytic rate enhancement, presumably through a different mechanism.

摘要

离子强度对酶活性和稳定性的影响在不同酶之间差异很大。已知离子强度会影响某些碱性磷酸酶(APs)的催化活性,如大肠杆菌碱性磷酸酶,但离子如何影响碱性磷酸酶仍存在争议。在此,我们研究了各种离子对灿烂弧菌冷适应碱性磷酸酶(VAP)的影响。此前,我们发现VAP的活性形式在低离子强度下极其不稳定。在此我们表明,NaCl提高了VAP的活性和稳定性,且在pH 7 - 10范围内该效应依赖于pH值。作为pH函数的活性曲线形成两个最大值,表明可能发生了构象变化。将pH从中性范围调至碱性范围伴随着无机磷酸盐(产物抑制)的K值和对硝基苯磷酸盐的K值大幅增加。随着pH变化观察到的活性转变与色氨酸荧光监测到的结构变化相关。热诱导和尿素诱导的失活均未伴随着活性位点金属离子的解离或二聚体的解离。这表明失活涉及活性位点构象的细微变化。此外,首次研究了VAP二聚体平衡,结果表明其高度倾向于二聚化,这取决于pH值和NaCl浓度。综上所述,这些数据支持了一个模型,即阴离子与VAP活性位点中的某些特定受体结合,大概通过不同机制导致极大的稳定性和催化速率提高。

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