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Phosphorylation of the multifunctional signal transducer B-cell adaptor protein (BCAP) promotes recruitment of multiple SH2/SH3 proteins including GRB2

机译:多功能信号转导器B细胞衔接蛋白(BCAP)的磷酸化促进多种SH2 / SH3蛋白(包括GRB2)的募集

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B-cell adaptor protein (BCAP) is a multimodular, multifunctional signal transducer that regulates signal transduction pathways in leukocytes, including macrophages, B-cells, and T-cells. In particular, BCAP suppresses inflammatory signaling by Toll-like receptors (TLRs). However, how BCAP itself is regulated and what its interaction partners are is unclear. Here, using human immune cell lines, including THP-1 cells, we characterized the complex phosphorylation patterns of BCAP and used a novel protein complex trapping strategy, called virotrap, to identify its interaction partners. This analysis identified known interactions of BCAP with phosphoinositide 3-kinase (PI3K) p85 subunit and NCK adaptor protein (NCK), together with previously unknown interactions of BCAP with Src homology 2 (SH2) and SH3 domain-containing adaptor proteins, notably growth factor receptor-bound protein 2 (GRB2) and CRK-like proto-oncogene, adaptor protein (CRKL). We show that the SH3 domain of GRB2 can bind to BCAP independently of BCAP phosphorylation status, suggesting that the SH2 domains mediate interactions with activated receptor tyrosine kinase complexes including the CD19 subunit of the B-cell receptor. Our results also suggested that the PI3K p85 subunit binds to BCAP via SH3 domains forming an inactive complex that is then activated by sequential binding with the SH2 domains. Taken together, our results indicate that BCAP is a complex hub that processes signals from multiple pathways in diverse cell types of the immune system.
机译:B细胞衔接蛋白(BCAP)是一种多模块,多功能信号转导子,可调节白细胞(包括巨噬细胞,B细胞和T细胞)中的信号转导途径。特别是,BCAP抑制Toll样受体(TLR)引起的炎症信号传导。但是,尚不清楚BCAP本身如何受到监管以及其互动伙伴是什么。在这里,我们使用包括THP-1细胞在内的人类免疫细胞系,对BCAP的复杂磷酸化模式进行了表征,并使用了一种称为virotrap的新型蛋白质复合物捕获策略来识别其相互作用伙伴。该分析确定了BCAP与磷酸肌醇3激酶(PI3K)p85亚基和NCK衔接子蛋白(NCK)的已知相互作用,以及BCAP与Src同源2(SH2)和含SH3域的衔接子蛋白,特别是生长因子的先前未知的相互作用受体结合蛋白2(GRB2)和CRK样原癌基因衔接蛋白(CRKL)。我们表明,GRB2的SH3域可以独立于BCAP磷酸化状态而与BCAP结合,表明SH2域介导了与活化受体酪氨酸激酶复合物(包括B细胞受体的CD19亚基)的相互作用。我们的结果还表明,PI3K p85亚基通过SH3结构域与BCAP结合,形成无活性的复合物,然后通过与SH2结构域的顺序结合而被激活。综上所述,我们的结果表明BCAP是一个复杂的枢纽,可处理来自免疫系统不同细胞类型中多种途径的信号。

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