Du X, Gu M, Weisel J W, Nagaswami C, Bennett J S, Bowditch R, Ginsberg M H
Scripps Research Institute, La Jolla, California 92037.
J Biol Chem. 1993 Nov 5;268(31):23087-92.
Integrin adhesion receptors participate in two-way transfer of information across the plasma membrane. For example, cytoplasmic events, such as activation of protein kinase C, cause an increase in the fibrinogen (Fg) binding affinity of the extracellular domain of integrin alpha IIb beta 3 ("inside-out signaling"). Conversely, ligand binding to alpha IIb beta 3 results in the generation of intracellular signals. We used anti-LIBS2, an anti-beta 3 monoclonal antibody, to understand potential mechanisms of this bidirectional signaling. Anti-LIBS2 bound to alpha IIb beta 3 with low affinity (Kd = 7.4 microM), and mimicked inside-out signaling by promoting Fg binding. The affinity of anti-LIBS2 binding was increased 20-fold (Kd = 326 nM) by addition of an Fg-mimetic synthetic peptide, RGDS. Thus, anti-LIBS2 and ligands (Fg and Fg-mimetic peptides) bind cooperatively to integrin alpha IIb beta 3, indicating a functional linkage between the ligand-binding site and the antibody-binding site. The anti-LIBS2-binding site was mapped by its binding to proteolytic and recombinant fragments of the beta 3 subunit. The epitope was located within an 89-residue region immediately adjacent to the transmembrane domain and 400 residues carboxyl-terminal to the known ligand-binding site(s). Electron microscope images of rotary shadowed ternary complexes of Fg, anti-LIBS2, and alpha IIb beta 3 revealed that the ligand-binding site and anti-LIBS2 epitope are separated by about 16 nm. This indicates that propagated long distance conformational changes can occur in alpha IIb beta 3. Such changes are likely to be involved in the bidirectional signaling function of this integral membrane protein.
整合素黏附受体参与跨质膜的双向信息传递。例如,细胞质事件,如蛋白激酶C的激活,会导致整合素αIIbβ3细胞外结构域的纤维蛋白原(Fg)结合亲和力增加(“由内向外信号传导”)。相反,配体与αIIbβ3结合会产生细胞内信号。我们使用抗LIBS2(一种抗β3单克隆抗体)来了解这种双向信号传导的潜在机制。抗LIBS2以低亲和力(Kd = 7.4 microM)与αIIbβ3结合,并通过促进Fg结合来模拟由内向外信号传导。添加Fg模拟合成肽RGDS后,抗LIBS2的结合亲和力增加了20倍(Kd = 326 nM)。因此,抗LIBS2和配体(Fg和Fg模拟肽)协同结合到整合素αIIbβ3,表明配体结合位点与抗体结合位点之间存在功能联系。通过抗LIBS2与β3亚基的蛋白水解片段和重组片段的结合来定位抗LIBS2结合位点。表位位于紧邻跨膜结构域的89个残基区域内,且在已知配体结合位点羧基末端400个残基处。Fg、抗LIBS2和αIIbβ3的旋转阴影三元复合物的电子显微镜图像显示,配体结合位点和抗LIBS2表位相距约16 nm。这表明αIIbβ3中可能发生长距离构象变化的传播。这种变化可能参与了这种整合膜蛋白的双向信号传导功能。