Denti Simona, Sirri Alessandra, Cheli Alessandra, Rogge Lars, Innamorati Giulio, Putignano Stella, Fabbri Monica, Pardi Ruggero, Bianchi Elisabetta
Laboratory of Immunoregulation, Department of Immunology, Institut Pasteur, 25 rue du Dr. Roux, 75724 Paris, France.
J Biol Chem. 2004 Mar 26;279(13):13027-34. doi: 10.1074/jbc.M313515200. Epub 2004 Jan 13.
Integrin adhesion receptors can act as signaling receptors that transmit information from the extracellular environment to the interior of the cell, affecting many fundamental cellular processes, such as cell motility, proliferation, differentiation, and survival. Integrin signaling depends on the formation of organized sub-membrane complexes that comprise cytoskeletal, adapter, and signaling molecules. The identification of molecules that interact with the cytoplasmic domain of integrins has been the focus of research aimed to elucidating the mechanistic basis of integrin signal transduction. We have identified RanBPM as a novel interactor of the beta(2) integrin LFA-1 in a yeast-two-hybrid screen. In the same assay, RanBPM also interacted with the beta(1) integrin cytoplasmic domain. We demonstrate that RanBPM is a peripheral membrane protein and that integrins and RanBPM interact in vitro and in vivo and co-localize at the cell membrane. We find that RanBPM is phosphorylated on serine residues; phosphorylation of RanBPM is increased by stress stimuli and decreased by treatment with the p38 kinase inhibitor SB203580. Transfection of RanBPM synergizes with LFA-1-mediated adhesion in the transcriptional activation of an AP-1-dependent promoter, indicating that the two proteins interact functionally as well. We suggest that RanBPM may constitute a molecular scaffold that contributes to coupling LFA-1 and other integrins with intracellular signaling pathways.
整合素黏附受体可作为信号受体,将细胞外环境的信息传递至细胞内部,影响许多基本的细胞过程,如细胞运动、增殖、分化和存活。整合素信号传导依赖于由细胞骨架、衔接蛋白和信号分子组成的有组织的亚膜复合物的形成。鉴定与整合素细胞质结构域相互作用的分子一直是旨在阐明整合素信号转导机制基础的研究重点。我们在酵母双杂交筛选中鉴定出RanBPM是β(2)整合素LFA-1的新型相互作用分子。在同一检测中,RanBPM也与β(1)整合素细胞质结构域相互作用。我们证明RanBPM是一种外周膜蛋白,整合素与RanBPM在体外和体内相互作用,并在细胞膜上共定位。我们发现RanBPM在丝氨酸残基上被磷酸化;应激刺激会增加RanBPM的磷酸化,而用p38激酶抑制剂SB203580处理则会使其磷酸化降低。RanBPM的转染与LFA-1介导的黏附在AP-1依赖性启动子的转录激活中协同作用,表明这两种蛋白在功能上也相互作用。我们认为RanBPM可能构成一种分子支架,有助于将LFA-1和其他整合素与细胞内信号通路偶联起来。