首页> 外文期刊>The Biochemical Journal >Evidence for co-operativity in coenzyme binding to tetrameric Sulfolobus solfataricus alcohol dehydrogenase and its structural basis: fluorescence, kinetic and structural studies of the wild-type enzyme and non-co-operative N249Y mutant.
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Evidence for co-operativity in coenzyme binding to tetrameric Sulfolobus solfataricus alcohol dehydrogenase and its structural basis: fluorescence, kinetic and structural studies of the wild-type enzyme and non-co-operative N249Y mutant.

机译:与四聚体Sulfolobus solfataricus醇脱氢酶结合的辅酶的协同作用及其结构基础的证据:野生型酶和非协同N249Y突变体的荧光,动力学和结构研究。

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The interaction of coenzyme with thermostable homotetrameric NAD(H)-dependent alcohol dehydrogenase from the thermoacidophilic sulphur-dependent crenarchaeon Sulfolobus solfataricus (SsADH) and its N249Y (Asn-249-->Tyr) mutant was studied using the high fluorescence sensitivity of its tryptophan residues Trp-95 and Trp-117 to the binding of coenzyme moieties. Fluorescence quenching studies performed at 25 degrees C show that SsADH exhibits linearity in the NAD(H) binding [the Hill coefficient (h) approximately 1) at pH 9.8 and at moderate ionic strength, in addition to positive co-operativity (h=2.0-2.4) at pH 7.8 and 6.8, and at pH 9.8 in the presence of salt. Furthermore, NADH binding is positively co-operative below 20 degrees C (h approximately 3) and negatively co-operative at 40-50 degrees C (h approximately 0.7), as determined at moderate ionic strength and pH 9.8. Steady-state kinetic measurements show that SsADH displays standard Michaelis-Menten kinetics between 35 and 45 degrees C, but exhibits positive and negative co-operativity for NADH oxidation below (h=3.3 at 20 degrees C) and above (h=0.7 at 70-80 degrees C) this range of temperatures respectively. However, N249Y SsADH displays non-co-operative behaviour in coenzyme binding under the same experimental conditions used for the wild-type enzyme. In loop 270-275 of the coenzyme domain and segments at the interface of dimer A-B, analyses of the wild-type and mutant SsADH structures identified the structural elements involved in the intersubunit communication and suggested a possible structural basis for co-operativity. This is the first report of co-operativity in a tetrameric ADH and of temperature-induced co-operativity in a thermophilic enzyme.
机译:利用色氨酸的高荧光敏感性,研究了辅酶与嗜热硫依赖型克雷纳鱼嗜盐菌Sulfolobus solfataricus(SsADH)及其N249Y(Asn-249-> Tyr)突变体的热稳定同四聚体NAD(H)依赖性醇脱氢酶之间的相互作用残基Trp-95和Trp-117与辅酶部分的结合。在25摄氏度下进行的荧光猝灭研究表明,SsADH在pH 9.8和中等离子强度的NAD(H)结合中表现出线性[希尔系数(h)约为1),并且具有正协同作用(h = 2.0) -2.4)在pH 7.8和6.8,以及在盐存在下的pH 9.8。此外,如在中等离子强度和pH 9.8下测定,NADH结合在20摄氏度(h约为3)以下为正合作,在40-50摄氏度(h约为0.7)下为负合作。稳态动力学测量结果显示,SsADH在35至45摄氏度之间显示标准的Michaelis-Menten动力学,但在低于(在20摄氏度下为h = 3.3)和高于(在70摄氏度下为h = 0.7)时显示出对NADH氧化的正和负协同性。 -80摄氏度)的温度范围。但是,在与野生型酶相同的实验条件下,N249Y SsADH在辅酶结合中显示出非合作行为。在二聚体A-B界面处辅酶结构域和节段的环270-275中,对野生型和突变型SsADH结构的分析确定了参与亚基间通讯的结构元件,并提出了协同作用的可能结构基础。这是四聚体ADH中的协同作用和嗜热酶中温度诱导的协同作用的首次报道。

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