Department of Anatomy, Keio University School of Medicine, Shinjuku-ku, Tokyo, Japan.
PLoS One. 2013 Jun 20;8(6):e66096. doi: 10.1371/journal.pone.0066096. Print 2013.
Epitopes for a panel of anti-αVβ3 monoclonal antibodies (mAbs) were investigated to explore the activation mechanism of αVβ3 integrin. Experiments utilizing αV/αIIb domain-swapping chimeras revealed that among the nine mAbs tested, five recognized the ligand-binding β-propeller domain and four recognized the thigh domain, which is the upper leg of the αV chain. Interestingly, the four mAbs included function-blocking as well as non-functional mAbs, although they bound at a distance from the ligand-binding site. The epitopes for these four mAbs were further determined using human-to-mouse αV chimeras. Among the four, P3G8 recognized an amino acid residue, Ser-528, located on the side of the thigh domain, while AMF-7, M9, and P2W7 all recognized a common epitope, Ser-462, that was located close to the α-genu, where integrin makes a sharp bend in the crystal structure. Fibrinogen binding studies for cells expressing wild-type αVβ3 confirmed that AMF-7, M9, and P2W7 were inhibitory, while P3G8 was non-functional. However, these mAbs were all unable to block binding when αVβ3 was constrained in its extended conformation. These results suggest that AMF-7, M9, and P2W7 block ligand binding allosterically by stabilizing the angle of the bend in the bent conformation. Thus, a switchblade-like movement of the integrin leg is indispensable for the affinity regulation of αVβ3 integrin.
针对一组抗 αVβ3 单克隆抗体 (mAb) 的表位进行了研究,以探索 αVβ3 整合素的激活机制。利用 αV/αIIb 结构域交换嵌合体的实验表明,在测试的 9 种 mAb 中,有 5 种识别配体结合的 β-三叶状结构域,4 种识别 thigh 结构域,即 αV 链的大腿部分。有趣的是,这 4 种 mAb 包括功能阻断型和非功能型 mAb,尽管它们结合在配体结合位点的远处。使用人源到鼠源的 αV 嵌合体进一步确定了这 4 种 mAb 的表位。在这 4 种 mAb 中,P3G8 识别位于 thigh 结构域侧面的一个氨基酸残基,丝氨酸 528,而 AMF-7、M9 和 P2W7 都识别一个共同的表位,丝氨酸 462,该表位靠近 α-转角,在晶体结构中整合素在此处发生急剧弯曲。表达野生型 αVβ3 的细胞的纤维蛋白原结合研究证实,AMF-7、M9 和 P2W7 具有抑制作用,而 P3G8 无功能。然而,当 αVβ3 处于伸展构象时,这些 mAb 都无法阻断结合。这些结果表明,AMF-7、M9 和 P2W7 通过稳定弯曲构象中弯曲角度来别构地阻断配体结合。因此,整合素腿的类似刀叉的运动对于 αVβ3 整合素的亲和力调节是必不可少的。