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DifferentDynamical Effects in Mesophilic and HyperthermophilicDihydrofolate Reductases

机译:不同中温和超高温的动力学效应二氢叶酸还原酶

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摘要

The role of protein dynamics in the reaction catalyzed by dihydrofolate reductase from the hyperthermophile Thermotoga maritima (TmDHFR) has been examined by enzyme isotope substitution (15N, 13C, 2H). In contrast to all other enzyme reactions investigated previously, including DHFR from Escherichia coli (EcDHFR), for which isotopic substitution led to decreased reactivity, the rate constant for the hydride transfer step is not affected by isotopic substitution of TmDHFR. TmDHFR therefore appears to lack the coupling of protein motions to the reaction coordinate that have been identified for EcDHFR catalysis. Clearly, dynamical coupling is not a universal phenomenon that affects the efficiency of enzyme catalysis.
机译:已通过酶同位素取代( 15 N, 13 C, 2 H)。与之前研究的所有其他酶反应(包括来自大肠杆菌的DHFR(EcDHFR))相反,同位素取代导致反应性降低,氢化物转移步骤的速率常数不受TmDHFR同位素取代的影响。因此,TmDHFR似乎缺乏蛋白质运动与已经确定用于EcDHFR催化的反应坐标的耦合。显然,动力学偶联不是影响酶催化效率的普遍现象。

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