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二氢叶酸还原酶与甲氨蝶呤的相互作用:整体及单分子动力学

Interaction of dihydrofolate reductase with methotrexate: ensemble and single-molecule kinetics.

作者信息

Rajagopalan P T Ravi, Zhang Zhiquan, McCourt Lynn, Dwyer Mary, Benkovic Stephen J, Hammes Gordon G

机构信息

Department of Chemistry, Pennsylvania State University, 152 Davey Laboratory, University Park, PA 16802, USA.

出版信息

Proc Natl Acad Sci U S A. 2002 Oct 15;99(21):13481-6. doi: 10.1073/pnas.172501499. Epub 2002 Oct 1.

Abstract

The thermodynamics and kinetics of the interaction of dihydrofolate reductase (DHFR) with methotrexate have been studied by using fluorescence, stopped-flow, and single-molecule methods. DHFR was modified to permit the covalent addition of a fluorescent molecule, Alexa 488, and a biotin at the N terminus of the molecule. The fluorescent molecule was placed on a protein loop that closes over methotrexate when binding occurs, thus causing a quenching of the fluorescence. The biotin was used to attach the enzyme in an active form to a glass surface for single-molecule studies. The equilibrium dissociation constant for the binding of methotrexate to the enzyme is 9.5 nM. The stopped-flow studies revealed that methotrexate binds to two different conformations of the enzyme, and the association and dissociation rate constants were determined. The single-molecule investigation revealed a conformational change in the enzyme-methotrexate complex that was not observed in the stopped-flow studies. The ensemble averaged rate constants for this conformation change in both directions is about 2-4 s(-1) and is attributed to the opening and closing of the enzyme loop over the bound methotrexate. Thus the mechanism of methotrexate binding to DHFR involves multiple steps and protein conformational changes.

摘要

通过荧光、停流和单分子方法研究了二氢叶酸还原酶(DHFR)与甲氨蝶呤相互作用的热力学和动力学。对DHFR进行修饰,使其能够在分子的N端共价添加荧光分子Alexa 488和生物素。荧光分子位于一个蛋白质环上,当发生结合时,该环会在甲氨蝶呤上闭合,从而导致荧光猝灭。生物素用于将活性形式的酶连接到玻璃表面以进行单分子研究。甲氨蝶呤与该酶结合的平衡解离常数为9.5 nM。停流研究表明,甲氨蝶呤与酶的两种不同构象结合,并测定了结合和解离速率常数。单分子研究揭示了酶 - 甲氨蝶呤复合物中的一种构象变化,这在停流研究中未观察到。该构象在两个方向上变化的总体平均速率常数约为2 - 4 s(-1),这归因于结合甲氨蝶呤的酶环的打开和关闭。因此,甲氨蝶呤与DHFR结合的机制涉及多个步骤和蛋白质构象变化。

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