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两性离子半抗原诱导的催化抗体。

Catalytic antibodies induced by a zwitterionic hapten.

作者信息

Tsumuraya T, Takazawa N, Tsunakawa A, Fleck R, Masamune S

机构信息

Kao Institute for Fundamental Research, Ichikaimachi, Haga, Tochigi, Japan.

出版信息

Chemistry. 2001 Sep 3;7(17):3748-55. doi: 10.1002/1521-3765(20010903)7:17<3748::aid-chem3748>3.0.co;2-g.

Abstract

A zwitterionic hapten 4 featuring both positively and negatively charged functional groups was designed and synthesized with the goal of generating catalytic antibodies for the hydrolysis of ester 6 and amide 7. Of the 36 monoclonal antibodies specific to BSA-4 (bovine serum albumin) that were isolated, six accelerated the hydrolysis of 6. Two catalytic antibodies with distinctively different and representative kinetic behaviors were selected for detailed kinetic studies. Whereas H8-2-6F11 showed burst kinetic behavior, which can be attributed to the formation of an acyl intermediate, H8-1-2D5 did not, but it did exhibit high multiple turnover activity. The rate of hydrolysis of 6 catalyzed by H8-1-2D5 followed Michaelis-Menten kinetics; the apparent values of the Michaelis-Menten constant Km and the catalytic constant kcat were 488 microM and 3.5 min(-1), respectively. The catalytic rate enhancement (kcat/kun) observed for H8-1-2D5 was 1.3 x 10(5), which is approximately two orders of magnitude greater than those for monofunctional haptens. Thus H8-1-2D5 compares well in catalytic activity with antibodies isolated by a related approach called heterologous immunization.

摘要

设计并合成了一种同时具有带正电和带负电官能团的两性离子半抗原4,目的是制备用于催化酯6和酰胺7水解的催化抗体。在分离得到的36种对牛血清白蛋白(BSA)-4具有特异性的单克隆抗体中,有6种能加速6的水解。选择了两种具有明显不同且具有代表性动力学行为的催化抗体进行详细的动力学研究。H8-2-6F11表现出爆发动力学行为,这可归因于酰基中间体的形成,而H8-1-2D5则没有,但它确实表现出高的多次周转活性。H8-1-2D5催化6水解的速率遵循米氏动力学;米氏常数Km和催化常数kcat的表观值分别为488 μM和3.5 min⁻¹。观察到H8-1-2D5的催化速率增强(kcat/kun)为1.3×10⁵,比单官能团半抗原的催化速率增强大约高两个数量级。因此,H8-1-2D5在催化活性方面与通过一种称为异源免疫的相关方法分离得到的抗体相当。

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