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Multimeric Growth Hormone Receptor Complexes Serve as Signaling Platforms

机译:多聚体生长激素受体复合物用作信令平台

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Growth hormone (GH) signaling is required for promoting longitudinal body growth, stem cell activation, differentiation, and survival and for regulation of metabolism. Failure to adequately regulate GH signaling leads to disease: excessive GH signaling has been connected to cancer, and GH insensitivity has been reported in cachexia patients. Since its discovery in 1989, the receptor has served a pivotal role as the prototype cytokine receptor both structurally and functionally. Phosphorylation and ubiquitylation regulate the GH receptor (GHR) at the cell surface: two ubiquitin ligases (SCFβTrCP2 and CHIP) determine the GH responsiveness of cells by controlling its endocytosis, whereas JAK2 initiates the JAK/STAT pathway. We used blue native electrophoresis to identify phosphorylated and ubiquitylated receptor intermediates. We show that GHRs occur as ~500-kDa complexes that dimerize into active ~900-kDa complexes upon GH binding. The dimerized complexes act as platforms for transient interaction with JAK2 and ubiquitin ligases. If GH and receptors are made in the same cell (autocrine mode), only limited numbers of ~900-kDa complexes are formed. The experiments reveal the dynamic changes in post-translational modifications during GH-induced signaling events and show that relatively simple cytokine receptors like GHRs are able to form higher order protein complexes. Insight in the complex formation of cytokine receptors is crucially important for engineering cytokines that control ligand-induced cell responses and for generating a new class of therapeutic agents for a wide range of diseases.
机译:生长激素(GH)信号传导促进纵向体生长,干细胞活化,分化和存活以及用于调节代谢。未能充分调节GH发信号导致疾病:过量的GH发信号传导已与癌症相连,并且在恶毒症患者中报告了GH不敏感性。自1989年的发现以来,受体在结构上和功能上的原型细胞因子受体提供了枢转作用。磷酸化和ubiquitylation调节细胞表面上的GH受体(GHR):两个遍突蛋白连接酶(SCFβTRCP2和芯片)通过控制其内吞作用来确定细胞的GH响应性,而JAK2启动JAK / STAT途径。我们使用蓝色天然电泳来鉴定磷酸化和泛醌型受体中间体。我们表明,在GH绑定时,GHR为〜500kDA复合物,可以将其与活性〜900kda复合物中的〜500kda复合物。二聚综合复合物作为与JAK2和泛素连接酶的瞬态相互作用的平台。如果GH和受体在同一细胞(自分泌模式)中,则只有有限的〜900kDa复合物。实验揭示了GH诱导的信号事件期间翻译后修饰的动态变化,并表明,如GHR等相对简单的细胞因子受体能够形成高阶蛋白质复合物。在细胞因子受体的复杂形成中的洞察力对于控制配体诱导的细胞反应的工程细胞因子并且用于为各种疾病产生新的治疗剂的工程细胞因子至关重要。

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