首页> 美国卫生研究院文献>Biochemical Journal >The reactions of D-glyceraldehyde 3-phosphate with thiols and the holoenzyme of D-glyceraldehyde 3-phosphate dehydrogenase and of inorganic phosphate with the acyl-holoenzyme.
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The reactions of D-glyceraldehyde 3-phosphate with thiols and the holoenzyme of D-glyceraldehyde 3-phosphate dehydrogenase and of inorganic phosphate with the acyl-holoenzyme.

机译:D-甘油醛3-磷酸与硫醇的反应和D-甘油醛3-磷酸脱氢酶的全酶和无机磷酸与酰基-全酶的反应。

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摘要

D-Glyceraldehyde 3-phosphate forms adducts with thiols. These adducts, which are presumed to be hemithioacetals, equilibrate rapidly with the unhydrated form of the aldehyde, which is the subtrate for D-glyceraldehyde 3-phosphate dehydrogenase. The adduct provides a substrate buffer system whereby a constant low free aldehyde concentration can be maintained during the oxidation of aldehyde by the enzyme and NAD+. With this system, the kinetics of the association of the aldehyde with the enzyme were examined. The rate profile for this reaction is a single exponential process, showing that all four active sites of the enzyme have equivalent and independent reactivity towards the aldehyde, with an apparent second-order rate constant of 5 X 10(7)M-1-S-1 at pH8.0 and 21 degrees C. The second-order rate constant becomes 8 X 10(7)M-1-S-1 when account is taken of the forward and reverse catalytic rate constants of the dehydrogenase. The pH-dependence of the observed rate constant is consistent with a requirement for the unprotonated form of a group of pK 6.1, which is the pK observed for second ionization of glyceraldehyde 3-phosphate. The rate of phosphorolysis of the acyl-enzyme intermediate during the steady-state oxidative phosphorylation of the aldehyde was studied, and is proportional to the total Pi concentration up to at least 1 mM-Pi at pH 7.5. The pH-dependence of the rate of NADH generation under these conditions can be explained by the rate law d[NADA]/dt = k[acy] holoenzyme][PO4(3-)-A1, where thioester bond, although kinetically indistinguishable rate equations for the reaction are possible. The rates of the phosphorolysis reaction and of the aldehyde-association reaction decrease with increasing ionic strength, suggesting that the active site of the enzyme has cationic groups which are involved in the reaction of the enzyme with anionic substrates.
机译:D-甘油醛3-磷酸酯与硫醇形成加合物。这些被认为是半硫缩醛的加合物与未水合形式的醛迅速平衡,该醛是D-甘油醛3-磷酸脱氢酶的底物。加合物提供了底物缓冲系统,由此在醛被酶和NAD +氧化的过程中可以保持恒定的低游离醛浓度。使用该系统,检查了醛与酶缔合的动力学。此反应的速率分布是一个单一的指数过程,表明该酶的所有四个活性位点均对醛具有相同且独立的反应性,表观二级速率常数为5 X 10(7)M-1-S在pH8.0和21摄氏度下为-1。考虑到脱氢酶的正向和反向催化速率常数,二级速率常数变为8 X 10(7)M-1-S-1。观察到的速率常数的pH依赖性与对一组pK 6.1的非质子化形式的要求一致,这是对甘油三醛3-磷酸进行第二次电离所观察到的pK。研究了在醛的稳态氧化磷酸化过程中酰基酶中间体的磷酸解速率,该速率与在pH 7.5时至少达到1 mM-Pi的总Pi浓度成比例。在这些条件下,NADH生成速率的pH依赖性可以通过速率定律d [NADA] / dt = k [酰基]全酶] [PO4(3-)-A1来解释,其中硫酯键虽然在动力学上无法区分反应方程式是可能的。磷解反应和醛缔合反应的速率随着离子强度的增加而降低,表明该酶的活性位点具有阳离子基团,该阳离子基团参与该酶与阴离子底物的反应。

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