Orr Anthony Wayne, Pedraza Claudio E, Pallero Manuel Antonio, Elzie Carrie A, Goicoechea Silvia, Strickland Dudley K, Murphy-Ullrich Joanne E
Department of Pathology, Division of Molecular and Cellular Pathology and The Cell Adhesion and Matrix Research Center, University of Alabama at Birmingham, VH 668 1530, 3rd Ave. South, Birmingham, AL 35294-0019, USA.
J Cell Biol. 2003 Jun 23;161(6):1179-89. doi: 10.1083/jcb.200302069.
Thrombospondin (TSP) signals focal adhesion disassembly (the intermediate adhesive state) through interactions with cell surface calreticulin (CRT). TSP or a peptide (hep I) of the active site induces focal adhesion disassembly through binding to CRT, which activates phosphoinositide 3-kinase (PI3K) and extracellular signal-related kinase (ERK) through Galphai2 proteins. Because CRT is not a transmembrane protein, it is likely that CRT signals as part of a coreceptor complex. We now show that low density lipoprotein receptor-related protein (LRP) mediates focal adhesion disassembly initiated by TSP binding to CRT. LRP antagonists (antibodies, receptor-associated protein) block hep I/TSP-induced focal adhesion disassembly. LRP is necessary for TSP/hep I signaling because TSP/hep I is unable to stimulate focal adhesion disassembly or ERK or PI3K signaling in fibroblasts deficient in LRP. LRP is important in TSP-CRT signaling, as shown by the ability of hep I to stimulate association of Galphai2 with LRP. The isolated proteins LRP and CRT interact, and LRP and CRT are associated with hep I in molecular complexes extracted from cells. These data establish a mechanism of cell surface CRT signaling through its coreceptor, LRP, and suggest a novel function for LRP in regulating cell adhesion.
血小板反应蛋白(TSP)通过与细胞表面钙网蛋白(CRT)相互作用,发出粘着斑解体信号(中间粘附状态)。TSP或活性位点的一种肽(hep I)通过与CRT结合诱导粘着斑解体,CRT通过Gαi2蛋白激活磷脂酰肌醇3激酶(PI3K)和细胞外信号调节激酶(ERK)。由于CRT不是跨膜蛋白,它可能作为共受体复合物的一部分发出信号。我们现在表明,低密度脂蛋白受体相关蛋白(LRP)介导由TSP与CRT结合引发的粘着斑解体。LRP拮抗剂(抗体、受体相关蛋白)可阻断hep I/TSP诱导的粘着斑解体。LRP对TSP/hep I信号传导是必需的,因为TSP/hep I无法在缺乏LRP的成纤维细胞中刺激粘着斑解体或ERK或PI3K信号传导。LRP在TSP-CRT信号传导中很重要,如hep I刺激Gαi2与LRP结合的能力所示。分离出的蛋白LRP和CRT相互作用,并且LRP和CRT在从细胞中提取的分子复合物中与hep I相关联。这些数据建立了细胞表面CRT通过其共受体LRP发出信号的机制,并提示LRP在调节细胞粘附方面具有新功能。