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Orchestration of ErbB3 signaling through heterointeractions and homointeractions

机译:通过异性相互作用和均质相互作用进行ErbB3信号的编排

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Members of the ErbB family of receptor tyrosine kinases are capable of both homointeractions and heterointeractions. Because each receptor has a unique set of binding sites for downstream signaling partners and differential catalytic activity, subtle shifts in their combinatorial interplay may have a large effect on signaling outcomes. The overexpression and mutation of ErbB family members are common in numerous human cancers and shift the balance of activation within the signaling network. Here we report the development of a spatial stochastic model that addresses the dynamics of ErbB3 homodimerization and heterodimerization with ErbB2. The model is based on experimental measures for diffusion, dimer off-rates, kinase activity, and dephosphorylation. We also report computational analysis of ErbB3 mutations, generating the prediction that activating mutations in the intracellular and extracellular domains may be subdivided into classes with distinct underlying mechanisms. We show experimental evidence for an ErbB3 gain-of-function point mutation located in the C-lobe asymmetric dimerization interface, which shows enhanced phosphorylation at low ligand dose associated with increased kinase activity.
机译:ErbB受体酪氨酸激酶家族的成员能够同时发生均质相互作用和异质相互作用。因为每个受体都有一组独特的下游信号配偶体结合位点和不同的催化活性,所以其组合相互作用的细微变化可能会对信号转导产生很大影响。 ErbB家族成员的过表达和突变在许多人类癌症中很常见,并且会改变信号网络内激活的平衡。在这里,我们报告的空间随机模型的发展,解决了ErbB3同源二聚化和与ErbB2异二聚化的动力学。该模型基于扩散,二聚体脱速率,激酶活性和去磷酸化的实验测量。我们还报告了ErbB3突变的计算分析,生成了预测,即细胞内和细胞外结构域中的激活突变可细分为具有不同潜在机制的类。我们显示了位于C瓣不对称二聚化界面中的ErbB3功能获得点突变的实验证据,该突变在低配体剂量下显示了增强的磷酸化,与增加的激酶活性相关。

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