嗜热脂肪芽孢杆菌耐热性氨基酰化酶:金属中心对催化和蛋白质稳定性的意义。

H M Weiss, G J Palm, K H Röhm
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引用次数: 11

摘要

来自嗜热脂肪芽孢杆菌的一种耐热性氨基酰化酶(n -酰基氨基酰化酶,EC 3.5.1.14)在大肠杆菌中过表达,并在金属含量、金属依赖性、热稳定性和四级结构方面进行了表征。与其他氨基酰化酶家族的酶一样,天然氨基酰化酶每个亚基含有一个Zn2+离子。其他几种过渡金属离子(Co2+、Mn2+和Cd2+)也对n -乙酰l -丙氨酸维持氨基酰化酶活性,其中Cd2+的转化率最高。通过测定金属缓冲体系的活度,估计了各金属配合物的稳定常数。Co2+也起到活化剂的作用,主要是通过降低底物的Km。这些数据和用天然酶和无金属酶获得的CD光谱表明,耐热性氨基酰化酶的固有金属离子在结构上起主要作用。与以前的报道相反,酶在分析凝胶过滤中表现为二聚体。
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Thermostable aminoacylase from Bacillus stearothermophilus: significance of the metal center for catalysis and protein stability.

A thermostable aminoacylase (N-acylamino acid amidohydrolase, EC 3.5.1.14) from Bacillus stearothermophilus was overexpressed in E. coli and characterized with respect to metal content, metal dependence, heat stability, and quaternary structure. Like other enzymes of the aminoacylase family, native aminoacylase contains one Zn2+ ion per subunit. Several other transition metal ions (Co2+, Mn2+ and Cd2+) also sustain aminoacylase activity toward N-acetyl L-alanine with Cd2+ giving the highest turnover number. The stability constants of the respective metal complexes were estimated by activity measurements in metal buffer systems. Co2+ also acts as an activator mainly by lowering the Km for the substrate. These data and CD spectra obtained with the native and the metal-free enzyme suggest a predominantly structural role for the intrinsic metal ion of thermostable aminoacylase. In contrast to previous reports the enzyme behaved as a dimer in analytical gel filtration.

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