Artoni Andrea, Li JiHong, Mitchell Beau, Ruan Jian, Takagi Junichi, Springer Timothy A, French Deborah L, Coller Barry S
Laboratory of Blood and Vascular Biology, The Rockefeller University, New York, NY 10021, USA.
Proc Natl Acad Sci U S A. 2004 Sep 7;101(36):13114-20. doi: 10.1073/pnas.0404201101. Epub 2004 Jul 26.
Abciximab, a derivative of the murine mAb 7E3, protects against ischemic complications of percutaneous coronary interventions by inhibiting ligand binding to the alphaIIbbeta3 receptor. In this study we identified regions on integrin beta3 that control 7E3 binding. Murine/human amino acid substitutions were created in two regions of the betaA domain that previous studies found to influence 7E3 binding: the C177-C184 loop and K125-N133. The T182N substitution and a K125Q mutation reduced 7E3 binding to human beta3 in complex with alphaIIb. The introduction of both the human C177-C184 region and human W129 into murine beta3 was necessary and sufficient to permit 7E3 binding to the human alphaIIb/murine beta3 complex. Although we cannot exclude allosteric effects, we propose that 7E3 binds between C177-C184 and W129, which are within 15 A of each other in the crystal structure and close to the beta3 metal ion-dependent adhesion site. We previously demonstrated that 7E3 binds more rapidly to activated than unactivated platelets. Because it has been proposed that alphaIIbbeta3 changes from a bent to an extended conformation upon activation, we hypothesized that 7E3 binds less well to the bent than the extended conformation. In support of this hypothesis we found that 7E3 bound less well to an alphaIIbbeta3 construct locked in a bent conformation, and unlocking the conformation restored 7E3 binding. Thus, our data are consistent with alphaIIbbeta3 existing in variably bent conformations in equilibrium with each other on unactivated platelets, and activation resulting in alphaIIbbeta3 adopting a more extended conformation.
阿昔单抗是鼠源单克隆抗体7E3的衍生物,通过抑制配体与αIIbβ3受体的结合,预防经皮冠状动脉介入治疗的缺血性并发症。在本研究中,我们确定了整合素β3上控制7E3结合的区域。在βA结构域的两个区域进行了鼠/人氨基酸替换,先前的研究发现这两个区域会影响7E3结合:C177 - C184环和K125 - N133。T182N替换和K125Q突变降低了7E3与和αIIb结合的人β3的结合。将人C177 - C184区域和人W129同时引入鼠β3对于允许7E3与人αIIb/鼠β3复合物结合是必要且充分的。尽管我们不能排除变构效应,但我们提出7E3结合于C177 - C184和W129之间,在晶体结构中它们彼此相距15埃,且靠近β3金属离子依赖性黏附位点。我们先前证明7E3与活化血小板的结合比未活化血小板更快。因为有人提出αIIbβ3在活化时从弯曲构象转变为伸展构象,我们推测7E3与弯曲构象的结合不如与伸展构象的结合好。支持这一假设的是,我们发现7E3与锁定在弯曲构象的αIIbβ3构建体的结合较差,而构象解锁后恢复了7E3结合。因此,我们的数据与未活化血小板上αIIbβ3以彼此处于平衡的不同弯曲构象存在一致,且活化导致αIIbβ3采用更伸展的构象。