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配体依赖性信号传导中,激活的和非对称磷酸化的 ERBB2 和 ERBB3 异源二聚体作为支架的功能隔离。

Functional isolation of activated and unilaterally phosphorylated heterodimers of ERBB2 and ERBB3 as scaffolds in ligand-dependent signaling.

机构信息

Department of Biochemistry and Molecular Biology, Sylvester Comprehensive Cancer Center, Miller School of Medicine, University of Miami, Miami, FL 33136, USA.

出版信息

Proc Natl Acad Sci U S A. 2012 Aug 14;109(33):13237-42. doi: 10.1073/pnas.1200105109. Epub 2012 Jun 25.

Abstract

The EGFR (ERBB) family provides a model system for receptor signaling, oncogenesis, and the development of targeted therapeutics. Heterodimers of the ligand-binding-deficient ERBB2 (HER2) receptor and the kinase impaired ERBB3 (HER3) create a potent mitogenic signal, but the phosphorylation of ERBB2 in this context presents a challenge to established models of phosphorylation in trans. Higher order complexes of ERBB receptors have been observed biophysically and offer a theoretical route for ERBB2 phosphorylation, but it is not clear whether such complexes provide functionality beyond the constituent dimers. We now show that a previously selected inhibitory RNA aptamer that targets the extracellular domain (ECD) of ERBB3 acts by sterically disrupting these higher order interactions. Ligand binding, heterodimerization, phosphorylation of ERBB3, and AKT signaling are only minimally affected, whereas ERBB2 phosphorylation and MAPK signaling are selectively inhibited. The mapping of the binding site and creation of aptamer-resistant point mutants are consistent with a model of side-by-side oriented heterodimers to facilitate proxy phosphorylation, even at very low endogenous levels of receptors (below 10,000 receptors per cell). Additional modes of signaling with relevance to pathological ERBB expression states emerge at high receptor levels. Hence, higher order complexes of nonoverexpressed ERBB receptors are an integral and qualitatively distinct part of normal ERBB2/ERBB3 signaling. This mechanism of activation has implications for models of allosteric control, specificity of interactions, possible mechanisms of cross-talk, and approaches to therapeutic intervention that at present often generate experimental and clinical outcomes that do not reconcile with purely canonical, dimer-based models.

摘要

表皮生长因子受体(EGFR)家族为受体信号转导、致癌和靶向治疗的发展提供了一个模型系统。配体结合缺陷的 ERBB2(HER2)受体和激酶受损的 ERBB3(HER3)的异二聚体产生强烈的有丝分裂信号,但在这种情况下 ERBB2 的磷酸化对磷酸化的现有模型提出了挑战。已经在生物物理上观察到更高阶的 ERBB 受体复合物,并为 ERBB2 磷酸化提供了理论途径,但尚不清楚这些复合物是否提供了超出组成二聚体的功能。我们现在表明,先前选择的针对 ERBB3 细胞外结构域(ECD)的抑制性 RNA 适体通过空间位阻破坏这些高阶相互作用来发挥作用。配体结合、异二聚化、ERBB3 的磷酸化和 AKT 信号转导仅受到最小影响,而 ERBB2 磷酸化和 MAPK 信号转导则被选择性抑制。结合位点的映射和适体抗性点突变体的创建与侧对侧定向异二聚体模型一致,即使在受体的内源性水平非常低(每个细胞低于 10,000 个受体)时也能促进代理磷酸化。在高受体水平下出现与病理性 ERBB 表达状态相关的额外信号转导模式。因此,非过表达 ERBB 受体的高阶复合物是正常 ERBB2/ERBB3 信号转导的一个完整且具有本质区别的部分。这种激活机制对变构控制、相互作用特异性、可能的串扰机制以及治疗干预方法具有影响,目前这些方法经常产生与纯经典、基于二聚体的模型不一致的实验和临床结果。

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