Chen Y P, O'Toole T E, Shipley T, Forsyth J, LaFlamme S E, Yamada K M, Shattil S J, Ginsberg M H
Department of Vascular Biology, Scripps Research Institute, La Jolla, California 92037.
J Biol Chem. 1994 Jul 15;269(28):18307-10.
The affinities of integrin alpha beta heterodimers for extracellular ligands are important regulators of cell adhesion. Intracellular signals provoke changes in the integrin extracellular domain resulting in "activation," as manifested by an increase in affinity. Interactions of integrin cytoplasmic domains with intracellular elements may mediate this "inside-out signaling." Here we report that overexpression of chimeras of the cytoplasmic domain of integrin beta 3 or beta 1 subunits, joined to the extracellular and transmembrane domains of the Tac subunit of the interleukin-2 receptor, reduced integrin affinity. In contrast, chimeras containing the cytoplasmic domain of alpha 5 or alpha IIb or of beta 3 bearing a mutation that disrupts inside-out signaling lacked inhibitory activity. These data suggest that limiting quantities of intracellular factors bind to integrin beta 3 and beta 1 cytoplasmic domains to modulate ligand binding affinity. Structural mimics of these domains may provide a novel means to alter cell adhesion.
整合素αβ异二聚体与细胞外配体的亲和力是细胞黏附的重要调节因子。细胞内信号引发整合素细胞外结构域的变化,导致“激活”,表现为亲和力增加。整合素细胞质结构域与细胞内元件的相互作用可能介导这种“由内向外信号传导”。在此我们报告,整合素β3或β1亚基细胞质结构域与白细胞介素-2受体Tac亚基的细胞外和跨膜结构域连接而成的嵌合体的过表达降低了整合素亲和力。相反,含有α5或αIIb细胞质结构域或带有破坏由内向外信号传导突变的β3的嵌合体缺乏抑制活性。这些数据表明,有限数量的细胞内因子与整合素β3和β1细胞质结构域结合以调节配体结合亲和力。这些结构域的结构模拟物可能提供一种改变细胞黏附的新方法。