Teulon Jean-Marie, Parot Pierre, Odorico Michael, Pellequer Jean-Luc
Commissariat à l'Energie Atomique, Institute for Biotechnology and Environmental Biology, Marcoule, F-30207 Bagnols sur Cèze, France.
Biophys J. 2008 Nov 15;95(10):L63-5. doi: 10.1529/biophysj.108.141937. Epub 2008 Sep 12.
Previous studies on molecular recognition of uranyl-DCP (dicarboxy-phenanthroline chelator) compound by two distinct monoclonal antibodies (Mabs U04S and U08S) clearly showed the presence of a biphasic shape in Bell-Evans' plots and an accentuated difference in slopes at the high loading rates. To further explore the basis in the slope difference, we have performed complementary experiments using antibody PHE03S, raised against uranyl-DCP but, presenting a strong cross-reactivity toward the DCP chelator. This work allowed us to obtain a reallocation of the respective contributions of the metal ion itself and that of the chelator. Results led us to propose a 2D schematic model representing two energy barriers observed in the systems Mabs U04S- and U08S-[UO(2)-DCP] where the outer barrier characterizes the interaction between UO(2) and Mab whereas the inner barrier characterizes the interaction between DCP and Mab. Using dynamic force spectroscopy, it is thus possible to dissect molecular interactions during the unbinding between proteins and ligands.
先前关于两种不同单克隆抗体(Mabs U04S和U08S)对铀酰-DCP(二羧基-菲咯啉螯合剂)化合物的分子识别研究清楚地表明,在贝尔-埃文斯图中存在双相形状,并且在高负载率下斜率存在明显差异。为了进一步探究斜率差异的基础,我们使用针对铀酰-DCP产生但对DCP螯合剂具有强烈交叉反应性的抗体PHE03S进行了补充实验。这项工作使我们能够重新分配金属离子本身和螯合剂各自的贡献。结果促使我们提出一个二维示意图模型,该模型表示在系统Mabs U04S-和U08S-[UO(2)-DCP]中观察到的两个能量屏障,其中外部屏障表征UO(2)与单克隆抗体之间的相互作用,而内部屏障表征DCP与单克隆抗体之间的相互作用。因此,使用动态力谱可以剖析蛋白质与配体解离过程中的分子相互作用。