Killock David J, Parsons Maddy, Zarrouk Marouan, Ameer-Beg Simon M, Ridley Anne J, Haskard Dorian O, Zvelebil Marketa, Ivetic Aleksandar
Cardiovascular Science Unit, National Heart and Lung Institute, Imperial College London, Hammersmith Campus, London W12 0NN.
J Biol Chem. 2009 Mar 27;284(13):8833-45. doi: 10.1074/jbc.M806983200. Epub 2009 Jan 7.
L-selectin is a cell adhesion molecule that tethers leukocytes to the luminal walls of venules during inflammation and enables them to roll under the force of blood flow. Clustering of L-selectin during rolling is thought to promote outside-in signals that lead to integrin activation and chemokine receptor expression, ultimately contributing to leukocyte arrest. Several studies have underscored the importance of the L-selectin cytoplasmic tail in functionally regulating adhesion and signaling. Interestingly, the L-selectin tail comprises only 17 amino acids, and yet it is thought to bind simultaneously to several proteins. For example, constitutive association of calmodulin (CaM) and ezrin/radixin/moesin (ERM) to L-selectin confers resistance to proteolysis and microvillar positioning, respectively. In this report we found that recombinant purified CaM and ERM bound non-competitively to the same tail of L-selectin. Furthermore, molecular modeling supported the possibility that CaM, L-selectin, and moesin could form a heterotrimeric complex. Finally, using fluorescence lifetime imaging microscopy to measure fluorescence resonance energy transfer, it was shown that CaM, L-selectin, and ERM could interact simultaneously in vivo. Moreover, L-selectin clustering promoted CaM/ERM interaction in cis (i.e. derived from neighboring L-selectin tails). These results highlight a novel intracellular event that occurs as a consequence of L-selectin clustering, which could participate in transducing signals that promote the transition from rolling to arrest.
L-选择素是一种细胞粘附分子,在炎症过程中将白细胞与小静脉的管腔壁相连,并使其能够在血流作用下滚动。滚动过程中L-选择素的聚集被认为会促进外向内信号传导,导致整合素激活和趋化因子受体表达,最终促使白细胞停滞。多项研究强调了L-选择素细胞质尾巴在功能上调节粘附和信号传导的重要性。有趣的是,L-选择素尾巴仅由17个氨基酸组成,但据认为它能同时与几种蛋白质结合。例如,钙调蛋白(CaM)和埃兹蛋白/根蛋白/膜突蛋白(ERM)与L-选择素的组成性结合分别赋予了对蛋白水解的抗性和微绒毛定位。在本报告中,我们发现重组纯化的CaM和ERM与L-选择素的同一尾巴非竞争性结合。此外,分子建模支持了CaM、L-选择素和膜突蛋白可能形成异源三聚体复合物的可能性。最后,使用荧光寿命成像显微镜测量荧光共振能量转移,结果表明CaM、L-选择素和ERM在体内可以同时相互作用。此外,L-选择素聚集促进了顺式(即来自相邻L-选择素尾巴)的CaM/ERM相互作用。这些结果突出了一种由于L-选择素聚集而发生的新型细胞内事件,它可能参与转导促进从滚动到停滞转变的信号。