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pH对嗜碱环状芽孢杆菌磷酸丝氨酸转氨酶结构和稳定性的影响:热力学与晶体学研究

Effect of pH on the structure and stability of Bacillus circulans ssp. alkalophilus phosphoserine aminotransferase: thermodynamic and crystallographic studies.

作者信息

Kapetaniou Evangelia G, Thanassoulas Angelos, Dubnovitsky Anatoly P, Nounesis George, Papageorgiou Anastassios C

机构信息

Centre of Biotechnology, University of Turku, Turku, Finland.

出版信息

Proteins. 2006 Jun 1;63(4):742-53. doi: 10.1002/prot.20935.

Abstract

pH is one of the key parameters that affect the stability and function of proteins. We have studied the effect of pH on the pyridoxal-5'-phosphate-dependent enzyme phosphoserine aminotransferase produced by the facultative alkaliphile Bacillus circulans ssp. alkalophilus using thermodynamic and crystallographic analysis. Enzymatic activity assay showed that the enzyme has maximum activity at pH 9.0 and relative activity less than 10% at pH 7.0. Differential scanning calorimetry and circular dichroism experiments revealed variations in the stability and denaturation profiles of the enzyme at different pHs. Most importantly, release of pyridoxal-5'-phosphate and protein thermal denaturation were found to occur simultaneously at pH 6.0 in contrast to pH 8.5 where denaturation preceded cofactor's release by approximately 3 degrees C. To correlate the observed differences in thermal denaturation with structural features, the crystal structure of phosphoserine aminotransferase was determined at 1.2 and 1.5 A resolution at two different pHs (8.5 and 4.6, respectively). Analysis of the two structures revealed changes in the vicinity of the active site and in surface residues. A conformational change in a loop involved in substrate binding at the entrance of the active site has been identified upon pH change. Moreover, the number of intramolecular ion pairs was found reduced in the pH 4.6 structure. Taken together, the presented kinetics, thermal denaturation, and crystallographic data demonstrate a potential role of the active site in unfolding and suggest that subtle but structurally significant conformational rearrangements are involved in the stability and integrity of phosphoserine aminotransferase in response to pH changes.

摘要

pH是影响蛋白质稳定性和功能的关键参数之一。我们利用热力学和晶体学分析方法,研究了pH对兼性嗜碱菌嗜碱环状芽孢杆菌产生的磷酸丝氨酸转氨酶(一种依赖于磷酸吡哆醛的酶)的影响。酶活性测定表明,该酶在pH 9.0时具有最大活性,在pH 7.0时相对活性低于10%。差示扫描量热法和圆二色性实验揭示了该酶在不同pH值下稳定性和变性曲线的变化。最重要的是,发现在pH 6.0时,磷酸吡哆醛的释放和蛋白质热变性同时发生,而在pH 8.5时,变性比辅因子的释放提前约3℃。为了将观察到的热变性差异与结构特征相关联,分别在两种不同的pH值(8.5和4.6)下,以1.2 Å和1.5 Å的分辨率测定了磷酸丝氨酸转氨酶的晶体结构。对这两种结构的分析揭示了活性位点附近和表面残基的变化。已确定在pH值变化时,活性位点入口处参与底物结合的一个环发生了构象变化。此外,发现在pH 4.6的结构中分子内离子对的数量减少。综上所述,所呈现的动力学、热变性和晶体学数据证明了活性位点在解折叠中的潜在作用,并表明在响应pH变化时,磷酸丝氨酸转氨酶结构上的细微但显著的构象重排涉及其稳定性和完整性。

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