Pujades C, Alon R, Yauch R L, Masumoto A, Burkly L C, Chen C, Springer T A, Lobb R R, Hemler M E
Division of Tumor Virology, Dana-Farber Cancer Institute, Harvard Medical School, Boston, Massachusetts 02115, USA.
Mol Biol Cell. 1997 Dec;8(12):2647-57. doi: 10.1091/mbc.8.12.2647.
It was previously shown that mutations of integrin alpha4 chain sites, within putative EF-hand-type divalent cation-binding domains, each caused a marked reduction in alpha4beta1-dependent cell adhesion. Some reports have suggested that alpha-chain "EF-hand" sites may interact directly with ligands. However, we show here that mutations of three different alpha4 "EF-hand" sites each had no effect on binding of soluble monovalent or bivalent vascular cell adhesion molecule 1 whether measured indirectly or directly. Furthermore, these mutations had minimal effect on alpha4beta1-dependent cell tethering to vascular cell adhesion molecule 1 under shear. However, EF-hand mutants did show severe impairments in cellular resistance to detachment under shear flow. Thus, mutation of integrin alpha4 "EF-hand-like" sites may impair 1) static cell adhesion and 2) adhesion strengthening under shear flow by a mechanism that does not involve alterations of initial ligand binding.
先前的研究表明,整合素α4链位点在假定的EF手型二价阳离子结合域内发生突变,均会导致α4β1依赖性细胞黏附显著降低。一些报告表明,α链“EF手”位点可能直接与配体相互作用。然而,我们在此表明,三种不同的α4“EF手”位点发生突变,无论是间接测量还是直接测量,对可溶性单价或二价血管细胞黏附分子1的结合均无影响。此外,这些突变对α4β1依赖性细胞在剪切力作用下与血管细胞黏附分子1的拴系作用影响极小。然而,EF手突变体在剪切流作用下的细胞抗脱离能力确实表现出严重受损。因此,整合素α4“EF手样”位点的突变可能通过一种不涉及初始配体结合改变的机制损害1)静态细胞黏附以及2)剪切流作用下的黏附增强。