Manié S N, Beck A R, Astier A, Law S F, Canty T, Hirai H, Druker B J, Avraham H, Haghayeghi N, Sattler M, Salgia R, Griffin J D, Golemis E A, Freedman A S
Department of Medicine, Harvard Medical School, Boston, Massachusetts 02115, USA.
J Biol Chem. 1997 Feb 14;272(7):4230-6. doi: 10.1074/jbc.272.7.4230.
The Crk-associated substrate p130(Cas) (Cas) and the recently described human enhancer of filamentation 1 (HEF1) are two proteins with similar structure (64% amino acid homology), which are thought to act as "docking" molecules in intracellular signaling cascades. Both proteins contain an N-terminal Src homology (SH), three domain and a cluster of SH2 binding motifs. Here we show that ligation of either beta1 integrin or B cell antigen receptor (BCR) on human tonsillar B cells and B cell lines promoted tyrosine phosphorylation of HEF1. In contrast, Cas tyrosine phosphorylation was observed in certain B cell lines but not in tonsillar B cells, indicating a more general role for HEF1 in B cell signaling. Interestingly, pretreatment of tonsillar B cells with cytochalasin B dramatically reduced both integrin- and BCR-induced HEF1 phosphorylation, suggesting that some component of the BCR-mediated signaling pathway is closely linked with a cytoskeletal reorganization. Both HEF1 and Cas were found to complex with the related adhesion focal tyrosine kinase (RAFTK), and when tyrosine phosphorylated, with the adapter molecule CrkL. In addition, the two molecules were detected in p53/56(Lyn) immunoprecipitates, and Lyn kinase was found to specifically bind the C-terminal proline-rich sequence of Cas in an in vitro binding assay. These associations implicate HEF1 and Cas as important components in a cytoskeleton-linked signaling pathway initiated by ligation of beta1 integrin or BCR on human B cells.
Crk相关底物p130(Cas)和最近描述的丝状化增强因子1(HEF1)是两种结构相似的蛋白质(氨基酸同源性为64%),它们被认为在细胞内信号级联反应中充当“对接”分子。这两种蛋白质都含有一个N端Src同源(SH)结构域、三个结构域以及一簇SH2结合基序。在此我们表明,人扁桃体B细胞和B细胞系上的β1整合素或B细胞抗原受体(BCR)的连接促进了HEF1的酪氨酸磷酸化。相反,在某些B细胞系中观察到了Cas的酪氨酸磷酸化,但在扁桃体B细胞中未观察到,这表明HEF1在B细胞信号传导中具有更普遍的作用。有趣的是,用细胞松弛素B预处理扁桃体B细胞可显著降低整合素和BCR诱导的HEF1磷酸化,这表明BCR介导的信号通路的某些成分与细胞骨架重组密切相关。发现HEF1和Cas都与相关黏附灶酪氨酸激酶(RAFTK)形成复合物,并且当酪氨酸磷酸化时,与衔接分子CrkL形成复合物。此外,在p53/56(Lyn)免疫沉淀物中检测到了这两种分子,并且在体外结合试验中发现Lyn激酶特异性结合Cas的C端富含脯氨酸的序列。这些关联表明HEF1和Cas是由人B细胞上的β1整合素或BCR连接引发的细胞骨架连接信号通路中的重要成分。