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Identification of alkaline pH optimum of human glucokinase because of ATP-mediated bias correction in outcomes of enzyme assays

机译:鉴别酶测定结果的ATP介导的偏差校正人葡萄糖酮酶的鉴定

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Adenosine triphosphate (ATP) is a crucial substrate and energy source commonly used in enzyme reactions. However, we demonstrated that the addition of this acidic compound to enzyme assay buffers can serve as a source of unnoticed pH changes. Even relatively low concentrations of ATP (up to 5?mM) shifted pH of reaction mixtures to acidic values. For example, Tris buffer lost buffering capacity at pH 7.46 by adding ATP at a concentration higher than 2?mM. In addition to the buffering capacity, the pH shifts differed with respect to the buffer concentration. High ATP concentrations are commonly used in hexokinase assays. We demonstrated how the presence of ATP affects pH of widely used enzyme assay buffers and inversely affected KsubM/sub of human hexokinase 2 and Ssub0.5/sub of human glucokinase. The pH optimum of human glucokinase was never reported before. We found that previously reported optimum of mammalian glucokinase was incorrect, affected by the ATP-induced pH shifts. The pH optimum of human glucokinase is at pH 8.5-8.7. Suggested is the full disclosure of reaction conditions, including the measurement of pH of the whole reaction mixtures instead of measuring pH prior to the addition of all the components.
机译:腺苷三磷酸(ATP)是酶反应中常用的关键基材和能源。然而,我们证明将该酸性化合物添加到酶测定缓冲液中可以用作不受伤的pH变化的源。甚至比较低的ATP浓度(最多5?mm)将反应混合物的pH移位至酸性值。例如,通过在高于2Ωmm的浓度下加入ATP,TRIS缓冲器在pH 7.46中丧生。除了缓冲能力之外,pH偏移是否相对于缓冲浓度不同。高ATP浓度通常用于六酮酶测定中。我们证明了ATP的存在如何影响广泛使用的酶测定缓冲液的pH,并反应人血红蛋素酶的人六酮酶2和S 0.5 的k m 。从未报道过人葡萄糖酮酶的pH值。我们发现,先前报告的哺乳动物葡萄糖蛋白酶最佳是不正确的,受ATP诱导的pH变化影响。人葡萄糖酮酶的pH值为pH8.5-8.7。建议是反应条件的全部披露,包括测量整个反应混合物的pH,而不是在加入所有组分之前测量pH。

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