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Identification of SH2B2β as an Inhibitor for SH2B1- and SH2B2α-Promoted Janus Kinase-2 Activation and Insulin Signaling

机译:鉴定SH2B2β作为SH2B1和SH2B2α促进的Janus Kinase-2激活和胰岛素信号转导的抑制剂

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摘要

The SH2B family has three members (SH2B1, SH2B2, and SH2B3) that contain conserved dimerization (DD), pleckstrin homology, and SH2 domains. The DD domain mediates the formation of homo- and heterodimers between members of the SH2B family. The SH2 domain of SH2B1 (previously named SH2-B) or SH2B2 (previously named APS) binds to phosphorylated tyrosines in a variety of tyrosine kinases, including Janus kinase-2 (JAK2) and the insulin receptor, thereby promoting the activation of JAK2 or the insulin receptor, respectively. JAK2 binds to various members of the cytokine receptor family, including receptors for GH and leptin, to mediate cytokine responses. In mice, SH2B1 regulates energy and glucose homeostasis by enhancing leptin and insulin sensitivity. In this work, we identify SH2B2β as a new isoform of SH2B2 (designated as SH2B2α) derived from the SH2B2 gene by alternative mRNA splicing. SH2B2β has a DD and pleckstrin homology domain but lacks a SH2 domain. SH2B2β bound to both SH2B1 and SH2B2α, as demonstrated by both the interaction of glutathione S-transferase-SH2B2β fusion protein with SH2B1 or SH2B2α in vitro and coimmunoprecipitation of SH2B2β with SH2B1 or SH2B2α in intact cells. SH2B2β markedly attenuated the ability of SH2B1 to promote JAK2 activation and subsequent tyrosine phosphorylation of insulin receptor substrate-1 by JAK2. SH2B2β also significantly inhibited SH2B1- or SH2B2α-promoted insulin signaling, including insulin-stimulated tyrosine phosphorylation of insulin receptor substrate-1. These data suggest that SH2B2β is an endogenous inhibitor of SH2B1 and/or SH2B2α, negatively regulating insulin signaling and/or JAK2-mediated cellular responses.
机译:SH2B家族具有三个成员(SH2B1,SH2B2和SH2B3),它们包含保守的二聚化(DD),pleckstrin同源性和SH2域。 DD结构域介导SH2B家族成员之间同二聚体和异二聚体的形成。 SH2B1(先前称为SH2-B)或SH2B2(先前称为APS)的SH2结构域与包括Janus激酶-2(JAK2)和胰岛素受体在内的多种酪氨酸激酶中的磷酸化酪氨酸结合,从而促进JAK2或分别是胰岛素受体。 JAK2结合细胞因子受体家族的各种成员(包括GH和瘦素的受体)来介导细胞因子应答。在小鼠中,SH2B1通过增强瘦素和胰岛素敏感性来调节能量和葡萄糖稳态。在这项工作中,我们通过选择性的mRNA剪接鉴定出SH2B2β是SH2B2基因衍生的SH2B2(称为SH2B2α)新同种型。 SH2B2β具有DD和pleckstrin同源结构域,但缺少SH2结构域。 SH2B2β既与SH2B1也与SH2B2α结合,如谷胱甘肽S-转移酶-SH2B2β融合蛋白与SH2B1或SH2B2α的体外相互作用以及在完整细胞中SH2B2β与SH2B1或SH2B2α的共免疫沉淀所证明。 SH2B2β显着减弱了SH2B1促进JAK2激活以及随后JAK2对胰岛素受体底物1酪氨酸磷酸化的能力。 SH2B2β还显着抑制SH2B1或SH2B2α促进的胰岛素信号传导,包括胰岛素受体底物1的胰岛素刺激酪氨酸磷酸化。这些数据表明SH2B2β是SH2B1和/或SH2B2α的内源性抑制剂,对胰岛素信号和/或JAK2介导的细胞反应产生负调节作用。

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