Pabbisetty Kumar B, Yue Xin, Li Chen, Himanen Juha-Pekka, Zhou Renping, Nikolov Dimitar B, Hu Longqin
Department of Pharmaceutical Chemistry, Ernest Mario School of Pharmacy, Rutgers, The State University of New Jersey, Piscataway, New Jersey 08854, USA.
Protein Sci. 2007 Mar;16(3):355-61. doi: 10.1110/ps.062608807.
Eph receptors and ephrins play important roles in regulating cell migration and positioning during both normal and oncogenic tissue development. Using a surface plasma resonance (SPR) biosensor, we examined the binding kinetics of representative monomeric and dimeric ephrins to their corresponding Eph receptors and correlated the apparent binding affinity with their functional activity in a neuronal growth cone collapse assay. Our results indicate that the Eph receptor binding of dimeric ephrins, formed through fusion with disulfide-linked Fc fragments, is best described using a bivalent analyte model as a two-step process involving an initial monovalent 2:1 binding followed by a second bivalent 2:2 binding. The bivalent binding dramatically decreases the apparent dissociation rate constants with little effect on the initial association rate constants, resulting in a 30- to 6000-fold decrease in apparent equilibrium dissociation constants for the binding of dimeric ephrins to Eph receptors relative to their monomeric counterparts. Interestingly, the change was more prominent in the A-class ephrin/Eph interactions than in the B-class of ephrins to Eph receptors. The increase in apparent binding affinities correlated well with increased activation of Eph receptors and the resulting growth cone collapse. Our kinetic analysis and correlation of binding affinity with function helped us better understand the interactions between ephrins and Eph receptors and should be useful in the design of inhibitors that interfere with the interactions.
Eph受体和ephrin在正常和致癌组织发育过程中调节细胞迁移和定位方面发挥着重要作用。我们使用表面等离子体共振(SPR)生物传感器,检测了代表性单体和二聚体ephrin与其相应Eph受体的结合动力学,并在神经元生长锥塌陷试验中将表观结合亲和力与其功能活性相关联。我们的结果表明,通过与二硫键连接的Fc片段融合形成的二聚体ephrin与Eph受体的结合,最好用二价分析物模型来描述,这是一个两步过程,包括初始的单价2:1结合,随后是第二个二价2:2结合。二价结合显著降低了表观解离速率常数,而对初始结合速率常数影响很小,导致二聚体ephrin与Eph受体结合的表观平衡解离常数相对于其单体对应物降低了30至6000倍。有趣的是,这种变化在A类ephrin/Eph相互作用中比在B类ephrin与Eph受体的相互作用中更为突出。表观结合亲和力的增加与Eph受体激活的增加以及由此导致的生长锥塌陷密切相关。我们的动力学分析以及结合亲和力与功能的相关性,有助于我们更好地理解ephrin与Eph受体之间的相互作用,并且应该有助于设计干扰这些相互作用的抑制剂。