Larsen N A, Zhou B, Heine A, Wirsching P, Janda K D, Wilson I A
Department of Molecular Biology, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, CA 92037, USA.
J Mol Biol. 2001 Aug 3;311(1):9-15. doi: 10.1006/jmbi.2001.4839.
Murine monoclonal antibody GNC92H2 was elicited by active immunization with a cocaine immunoconjugate and binds free cocaine with excellent specificity and moderate affinity. Improvement of affinity, as well as humanization of GNC92H2, would be advantageous in immunopharmacotherapy for cocaine addiction, and for emergency cases of drug overdose. Toward this end, the crystal structure of an engineered murine-human chimeric Fab of GNC92H2 complexed with cocaine was determined at 2.3 A resolution. Structural analysis reveals a binding pocket with high shape and charge complementarity to the cocaine framework, which explains the specificity for cocaine, as opposed to the pharmacologically inactive cocaine metabolites. Importantly, the structure provides a foundation for mutagenesis to enhance the binding affinity for cocaine and potent cocaine derivatives, such as cocaethylene, and for additional humanization of the antibody.
鼠单克隆抗体GNC92H2由可卡因免疫偶联物主动免疫诱导产生,能以优异的特异性和中等亲和力结合游离可卡因。提高亲和力以及对GNC92H2进行人源化,对于可卡因成瘾的免疫药物治疗以及药物过量的紧急情况将是有利的。为此,以2.3埃的分辨率测定了与可卡因复合的工程化鼠 - 人嵌合GNC92H2 Fab的晶体结构。结构分析揭示了一个与可卡因骨架具有高度形状和电荷互补性的结合口袋,这解释了对可卡因的特异性,与药理活性不高的可卡因代谢物形成对比。重要的是,该结构为诱变提供了基础,以增强对可卡因和强效可卡因衍生物(如可卡乙碱)的结合亲和力,并用于抗体的进一步人源化。