Gul Sheraz, Sonkaria Sanjiv, Pinitglang Surapong, Florez-Alvarez José, Hussain Syeed, Thomas Emrys W, Ostler Elizabeth L, Gallacher Gerard, Resmini Marina, Brocklehurst Keith
Laboratory of Structural and Mechanistic Enzymology, School of Biological Sciences, Queen Mary, University of London, UK.
Biochem J. 2003 Dec 15;376(Pt 3):813-21. doi: 10.1042/BJ20030716.
To investigate the hypothesis that decreased hapten flexibility may lead to increased catalytic antibody activity, we used two closely related immunogens differing only in the flexibility of the atomic framework around the structural motif of the haptens, analogous to the reaction centre of the corresponding substrates. Identical leaving-group determinants in the haptens and identical leaving groups in the substrates removed the ambiguity inherent in some data reported in the literature. Anti-phosphate and anti-phosphonate kinetically homogeneous polyclonal catalytic antibody preparations were compared by using carbonate and ester substrates respectively, each containing a 4-nitrophenolate leaving group. Synthetic routes to a new phosphonate hapten and new ester substrate were developed. The kinetic advantage of the more rigid anti-phosphonate/ester system was demonstrated at pH 8.0 by a 13-fold advantage in k(cat)/k(non-cat) and a 100-fold advantage in the proficiency constant, k(cat)/k (non-cat) x K(m). Despite these differences, the pH-dependences of the kinetic and binding characteristics and the results of chemical modification studies suggest closely similar catalytic mechanisms. The possible origin of the kinetic advantage of the more rigid hapten/substrate system is discussed.
为了研究半抗原灵活性降低可能导致催化抗体活性增加这一假说,我们使用了两种密切相关的免疫原,它们仅在半抗原结构基序周围原子框架的灵活性上有所不同,类似于相应底物的反应中心。半抗原中相同的离去基团决定簇和底物中相同的离去基团消除了文献中报道的一些数据所固有的模糊性。分别使用含有4-硝基苯酚离去基团的碳酸酯和酯底物,比较了抗磷酸酯和抗膦酸酯动力学均一的多克隆催化抗体制剂。开发了一种新的膦酸酯半抗原和新的酯底物的合成路线。在pH 8.0时,更刚性的抗膦酸酯/酯系统在催化常数与非催化常数之比(k(cat)/k(non-cat))上有13倍的优势,在熟练常数k(cat)/k(non-cat)×K(m)上有100倍的优势,证明了其动力学优势。尽管存在这些差异,但动力学和结合特性的pH依赖性以及化学修饰研究结果表明催化机制非常相似。讨论了更刚性的半抗原/底物系统动力学优势的可能来源。