首页> 外文期刊>Biochemistry >Temperature-induced conformational change at the catalytic site of Sulfolobus solfataricus alcohol dehydrogenase highlighted by Asn249Tyr substitution. A hydrogen/deuterium exchange, kinetic, and fluorescence quenching study
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Temperature-induced conformational change at the catalytic site of Sulfolobus solfataricus alcohol dehydrogenase highlighted by Asn249Tyr substitution. A hydrogen/deuterium exchange, kinetic, and fluorescence quenching study

机译:温度引起的Sulfolobus solfataricus醇脱氢酶催化位点的构象变化由Asn249Tyr取代突出显示。氢/氘交换,动力学和荧光猝灭研究

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摘要

A combination of hydrogen/deuterium exchange, fluorescence quenching, and kinetic studies was used to acquire experimental evidence for the crystallographically hypothesized increase in local flexibility which occurs in thermophilic NAD(+)-dependent Sulfolobus solfataricus alcohol dehydrogenase (SsADH) upon substitution Asn249Tyr. The substitution, located at the adenine-binding site, proved to decrease the affinity for both coenzyme and substrate, rendering the mutant enzyme 6-fold more active when compared to the wild-type enzyme [Esposito et al. (2003) FEBS Lett. 539, 14-18]. The amide H/D exchange data show that the wild-type and mutant enzymes have similar global flexibility at 22 and 60 degrees C. However, the temperature dependence of the Stern-Volmer constant determined by acrylamide quenching shows that the increase in temperature affects the local flexibility differently, since the Ksv increment is significantly higher for the wild-type than for the mutant enzyme over the range 18-45 degrees C. Interestingly, the corresponding van't Hoff plot (log Ksv vs 1/T) proves nonlinear for the apo and holo wild-type and apo mutant enzymes, with a break at approximate to 45 degrees C in all three cases due to a conformational change affecting the tryptophan microenvironment experienced by the quencher molecules. The Arrhenius and van't Hoff plots derived from the k(cat) and K-M thermodependence measured with cyclohexanol and NAD+ at different temperatures display an abrupt change of slope at 45-50 degrees C. This proves more pronounced in the case of the mutant enzyme compared to the wild-type enzyme due to a conformational change in the structure rather than to an overlapping of two or more rate-limiting reaction steps with different temperature dependencies of their rate constants. Three-dimensional analysis indicates that the observed conformational change induced by temperature is associated with the flexible loops directly involved in the substrate and coenzyme binding.
机译:氢/氘交换,荧光猝灭和动力学研究相结合,用于获得晶体学上假设的局部挠性增加的实验证据,所述局部挠性发生在取代Asn249Tyr的嗜热NAD(+)依赖的Sulfolobus solfataricus醇脱氢酶(SsADH)中。事实证明,位于腺嘌呤结合位点的取代降低了对辅酶和底物的亲和力,使突变型酶的活性比野生型酶高6倍[Esposito等。 (2003)FEBS Lett。 539,14-18]。酰胺H / D交换数据表明,野生型和突变型酶在22和60摄氏度下具有相似的全局柔韧性。但是,通过丙烯酰胺淬灭确定的Stern-Volmer常数的温度依赖性表明,温度升高会影响局部柔韧性有所不同,因为在18-45摄氏度范围内,野生型的Ksv增量明显高于突变型酶。有趣的是,相应的van't Hoff图(log Ksv与1 / T)证明是非线性的apo和holo野生型和apo突变酶,由于构象变化影响淬灭剂分子经历的色氨酸微环境,在所有三种情况下均在大约45摄氏度时断裂。由环己醇和NAD +在不同温度下测得的k(cat)和KM热依赖性得出的Arrhenius和van't Hoff图在45-50摄氏度时显示出陡峭的斜率变化。这在突变酶的情况下更明显与野生型酶相比,这是由于结构上的构象变化,而不是由于两个或多个速率限制反应步骤的重叠,而这些速率限制反应步骤的速率常数具有不同的温度依赖性。三维分析表明,观察到的温度诱导的构象变化与直接参与底物和辅酶结合的柔性环有关。

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