Sevostyanova Irina, Solovjeva Olga, Selivanov Vitaly, Kochetov German
A.N. Belozersky Institute of Physico-Chemical Biology, Moscow State University, Khokhlova Str. 4, 119992 Moscow, Russia.
Biochem Biophys Res Commun. 2009 Feb 20;379(4):851-4. doi: 10.1016/j.bbrc.2008.12.108. Epub 2008 Dec 31.
Cleavage by yeast transketolase of the donor substrate, D-xylulose 5-phosphate, in the absence of the acceptor substrate was studied using stopped-flow spectrophotometry. One mole of the substrate was shown to be cleaved in the prestationary phase, leading to the formation of one mole of the reaction product per mole enzyme, which has two active centers. This observation indicates that only one out of the two active centers functions (i.e., binds and cleaves the substrate) at a time. Such half-of-the-sites reactivity of transketolase conforms well with our understanding, proposed previously, that the active centers of the enzyme operate in sequence (in phase opposition): the cleavage of a ketose within one center (first phase of the transketolase reaction) is paralleled by its formation in the other center (glycolaldehyde residue is condensed with the acceptor substrate, and the second stage of the transketolase reaction is thereby completed) [M.V. Kovina, G.A. Kochetov, FEBS Lett. 440 (1998) 81-84].
利用停流分光光度法研究了在没有受体底物的情况下,酵母转酮醇酶对供体底物5-磷酸-D-木酮糖的裂解作用。结果表明,在预稳态阶段,每摩尔底物被裂解,每摩尔具有两个活性中心的酶会生成一摩尔反应产物。这一观察结果表明,两个活性中心中只有一个在同一时间发挥作用(即结合并裂解底物)。转酮醇酶的这种半位点反应性与我们之前提出的观点非常吻合,即该酶的活性中心按顺序(相位相反)运作:一个中心内酮糖的裂解(转酮醇酶反应的第一阶段)与另一个中心内酮糖的形成同时发生(乙醇醛残基与受体底物缩合,从而完成转酮醇酶反应的第二阶段)[M.V. 科维娜,G.A. 科切托夫,《欧洲生物化学学会联合会快报》440 (1998) 81 - 84]。