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用Sr2+取代与酶结合的Ca2+会改变甲醇脱氢酶的热稳定性。

Thermal stability of methanol dehydrogenase is altered by the replacement of enzyme-bound Ca2+ with Sr2+.

作者信息

Harris T K, Davidson V L

机构信息

Department of Biochemistry, University of Mississippi Medical Center, Jackson 39216-4505.

出版信息

Biochem J. 1994 Oct 1;303 ( Pt 1)(Pt 1):141-5. doi: 10.1042/bj3030141.

Abstract

Methanol dehydrogenase (MEDH) possesses tightly bound Ca2+ in addition to its pyrroloquinoline quinone prosthetic group. Ca2+ was replaced with Sr2+ by growing the host bacterium, Paracoccus denitrificans, in media in which Ca2+ was replaced with Sr2+. At temperatures in the transition region for stability, the rate constants for inactivation of MEDH purified from these cells (Sr-MEDH) were 2-fold lower than those for MEDH. However, Arrhenius plots yielded an activation energy (Ea) of 699 kJ (167 kcal)/mol for MEDH compared with 640 kJ (153 kcal)/mol for Sr-MEDH. Further analysis by transition-state theory yielded values for the activation enthalpy (delta H*) and activation entropy (delta S*) of 696 kJ (166 kcal)/mol and 1.73 kJ (414 cal)/mol per K for MEDH and 637 kJ (152 kcal)/mol and 1.55 kJ (371 cal)/mol per K for Sr-MEDH. The higher rate of inactivation of MEDH than Sr-MEDH at higher temperatures is a consequence of a more favourable net gain in entropy. This positive entropy contribution increases at high temperatures, and reduces the more favourable stability obtained from the enthalpy contribution for the free energy (delta G*) of inactivation. The differences in these thermodynamic data are discussed in relation to the recently determined crystal structure of MEDH as well as 1H electron-nuclear double resonance studies of the influence of Sr2+ substitution on the structure of the pyrroloquinoline quinone-derived radical in MEDH.

摘要

甲醇脱氢酶(MEDH)除了含有吡咯喹啉醌辅基外,还紧密结合有Ca2+。通过在Ca2+被Sr2+取代的培养基中培养宿主细菌反硝化副球菌,可将Ca2+替换为Sr2+。在稳定性转变区域的温度下,从这些细胞中纯化得到的MEDH(Sr-MEDH)的失活速率常数比MEDH低2倍。然而,阿伦尼乌斯图显示MEDH的活化能(Ea)为699 kJ(167 kcal)/mol,而Sr-MEDH为640 kJ(153 kcal)/mol。通过过渡态理论进一步分析得出,MEDH的活化焓(ΔH*)和活化熵(ΔS*)分别为696 kJ(166 kcal)/mol和1.73 kJ(414 cal)/mol·K,Sr-MEDH分别为637 kJ(152 kcal)/mol和1.55 kJ(371 cal)/mol·K。在较高温度下,MEDH比Sr-MEDH更高的失活速率是熵净增加更有利的结果。这种正的熵贡献在高温下增加,并降低了从失活自由能(ΔG*)的焓贡献中获得更有利的稳定性。这些热力学数据的差异结合最近确定的MEDH晶体结构以及关于Sr2+取代对MEDH中吡咯喹啉醌衍生自由基结构影响的1H电子-核双共振研究进行了讨论。

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