共享细胞因子信号受体:来自gp130系统的结构见解。

Martin J Boulanger, K Christopher Garcia
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引用次数: 72

摘要

绝大多数细胞因子信号是由“共享”受体介导的,这些受体形成了包含配体特异性受体的高阶复合物的中心信号成分。这些包括公共γ链(γ (c)),公共β链(β (c))和gp130,以及其他。这些受体具有交叉反应细胞因子识别和形成精确定向的多聚体信号组件的双重任务。目前,关于gp130的共享受体复合物的详细结构信息仅存在,gp130是哺乳动物细胞生长和稳态所必需的高度多效性共享细胞因子信号受体。迄今为止,已经鉴定出超过10种不同的四螺旋束配体,它们将gp130或其近亲之一(如LIF受体)纳入功能性低聚信号复合物中。在这篇综述中,我们总结了目前关于共享受体识别和激活的知识,重点是gp130。我们讨论了最近的结构和功能信息,以分析gp130细胞因子复合物的整体结构组装,并探讨gp130对其多个细胞因子配体的极端交叉反应性的基础。
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Shared cytokine signaling receptors: structural insights from the gp130 system.

The vast majority of cytokine signaling is mediated by "shared" receptors that form central signaling components of higher-order complexes incorporating ligand-specific receptors. These include the common gamma chain (gamma(c)), common beta chain (beta(c)), and gp130, as well as others. These receptors have the dual tasks of cross-reactive cytokine recognition, and formation of precisely oriented multimeric signaling assemblies. Currently, detailed structural information on a shared receptor complex exists only for gp130, which is a highly pleiotropic shared cytokine signaling receptor essential for mammalian cell growth and homeostasis. To date, more than 10 different four-helix bundle ligands have been identified that incorporate gp130, or one of its close relatives such as LIF receptor, into functional oligomeric signaling complexes. In this review we summarize our current knowledge of shared receptor recognition and activation, with a focus on gp130. We discuss recent structural and functional information to analyze overall architectural assemblies of gp130 cytokine complexes and probe the basis for the extreme cross-reactivity of gp130 for its multiple cytokine ligands.

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