Hughes P E, Diaz-Gonzalez F, Leong L, Wu C, McDonald J A, Shattil S J, Ginsberg M H
Department of Vascular Biology, The Scripps Research Institute, La Jolla, California 92037, USA.
J Biol Chem. 1996 Mar 22;271(12):6571-4. doi: 10.1074/jbc.271.12.6571.
Integrins are heterodimeric (alpha, beta) cell adhesion receptors. We demonstrate that point mutations in the cytoplasmic domains of both the alpha and beta subunits promote constitutive signaling by the integrin alphaIIbbeta3. By generating charge reversal mutations, we show these "activating" mutations may act by disrupting a potential salt bridge between the membrane-proximal portions of the alpha and beta subunit cytoplasmic domains. Thus, the modulation of specific interactions between the alpha and beta subunit cytoplasmic domains may regulate transmembrane signaling through integrins. In addition, these activating mutations induce dominant alterations in cellular behavior, such as the assembly of the extracellular matrix. Consequently, somatic mutations in integrin cytoplasmic domains could have profound effects in vivo on integrin-dependent functions such as matrix assembly, cell migration, and anchorage-dependent cell growth and survival.
整合素是异二聚体(α、β)细胞黏附受体。我们证明,α和β亚基细胞质结构域中的点突变可促进整合素αIIbβ3的组成性信号传导。通过产生电荷反转突变,我们表明这些“激活”突变可能通过破坏α和β亚基细胞质结构域膜近端部分之间潜在的盐桥而起作用。因此,α和β亚基细胞质结构域之间特定相互作用的调节可能通过整合素来调节跨膜信号传导。此外,这些激活突变会诱导细胞行为的显性改变,如细胞外基质的组装。因此,整合素细胞质结构域中的体细胞突变可能在体内对整合素依赖性功能产生深远影响,如基质组装、细胞迁移以及锚定依赖性细胞生长和存活。