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来自嗜冷菌深海栖热袍菌的二氢叶酸还原酶的催化作用。

Catalysis by dihydrofolate reductase from the psychropiezophile Moritella profunda.

机构信息

Cardiff University, Cardiff, CF10 3AT, UK.

出版信息

Chembiochem. 2010 Sep 24;11(14):2010-7. doi: 10.1002/cbic.201000341.

Abstract

The influence of temperature and pH on the stability and catalytic activity of dihydrofolate reductase (MpDHFR) from the cold-adapted deep-sea bacterium Moritella profunda was studied. The thermal melting temperature was found to be ∼38 °C and was not affected by pH, while activity measurements demonstrated that its stability was maximal at pH 7 and was reduced dramatically below pH 6 or above pH 8. The steady-state rate constant (k(cat)) was maximal at neutral pH and higher temperatures, while the Michaelis constants (K(M)) for both substrate and cofactor were optimal at lower temperatures and at elevated or reduced pH. For both temperature and pH, any change in k(cat) was therefore offset by a similar change in K(M). Both the activation enthalpy and entropy of the MpDHFR-catalysed reaction were lower than those of DHFR from E. coli leading overall to a very small difference in activation free energy and therefore similar steady-state rate constants at the same temperature. The chemical step of the reaction is not rate limiting at pH 7, but becomes progressively more rate limiting as the pH increases. These results demonstrate adaptation of MpDHFR to its environment and show compromises between enthalpic and entropic contributions to the reaction, and between k(cat) and K(M).

摘要

研究了来自嗜冷深海菌 Moritella profunda 的二氢叶酸还原酶 (MpDHFR) 的温度和 pH 对其稳定性和催化活性的影响。发现其热融温度约为 38°C,不受 pH 影响,而活性测量表明其在 pH 7 时稳定性最大,低于 pH 6 或高于 pH 8 时则急剧降低。稳态速率常数 (k(cat)) 在中性 pH 和较高温度下达到最大值,而对于底物和辅因子的米氏常数 (K(M)) 在较低温度和升高或降低 pH 时达到最佳。因此,对于温度和 pH 的任何变化,k(cat) 的变化都被 K(M) 的类似变化所抵消。MpDHFR 催化反应的活化焓和熵均低于大肠杆菌 DHFR,导致在相同温度下活化自由能差异很小,因此稳态速率常数相似。在 pH 7 时,反应的化学步骤不是限速步骤,但随着 pH 的升高,它逐渐成为更限速的步骤。这些结果表明 MpDHFR 适应其环境,并表明反应中焓和熵的贡献之间以及 k(cat) 和 K(M) 之间存在折衷。

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