Negro Alejandra, Brar Bhawanjit K, Gu Yusu, Peterson Kirk L, Vale Wylie, Lee Kuo-Fen
The Salk Institute, La Jolla, CA 92037, USA.
Proc Natl Acad Sci U S A. 2006 Oct 24;103(43):15889-93. doi: 10.1073/pnas.0607499103. Epub 2006 Oct 16.
erbB2/Her2, a ligandless receptor kinase, has pleiotropic effects on mammalian development and human disease. The absence of erbB2 signaling in cardiac myocytes results in dilated cardiomyopathy in mice, resembling the cardiotoxic effects observed in a subset of breast cancer patients treated with the anti-Her2 antibody herceptin. Emerging evidence suggests that erbB2 is pivotal for integrating signaling networks involving multiple classes of extracellular signals. However, its role in G protein-coupled receptor (GPCR) signaling remains undefined. Because the activation of the MAPK pathway through GPCR signaling is important for cardiac homeostasis, we investigated whether erbB2 is required for GPCR-mediated MAPK signaling in wild-type and heart-specific erbB2 mutant mice. Here we demonstrate that erbB2, but not EGF receptor, is essential for MAPK activation induced by multiple GPCR agonists in cardiac myocytes. erbB2 is immunocomplexed with a GPCR in vivo and is transactivated after ligand treatment in vitro. Coexpression of erbB2 with GPCRs in heterologous cells results in ligand-dependent complex formation and MAPK activation. Furthermore, MAPK activation and cardiac contractility are markedly impaired in heart-specific erbB2 mutants infused with a GPCR agonist. These results reveal an essential mechanism requiring erbB2 as a coreceptor for GPCR signaling in the heart. The obligatory role of erbB2 in GPCR-dependent signaling may also be important in other cellular systems.
erbB2/Her2是一种无配体受体激酶,对哺乳动物发育和人类疾病具有多效性作用。心肌细胞中erbB2信号缺失会导致小鼠扩张型心肌病,类似于接受抗Her2抗体赫赛汀治疗的一部分乳腺癌患者所观察到的心脏毒性作用。新出现的证据表明,erbB2对于整合涉及多种细胞外信号类别的信号网络至关重要。然而,其在G蛋白偶联受体(GPCR)信号传导中的作用仍不明确。由于通过GPCR信号传导激活MAPK途径对心脏稳态很重要,我们研究了野生型和心脏特异性erbB2突变小鼠中GPCR介导的MAPK信号传导是否需要erbB2。在这里,我们证明erbB2而非表皮生长因子受体对于心肌细胞中多种GPCR激动剂诱导的MAPK激活至关重要。erbB2在体内与GPCR形成免疫复合物,并且在体外配体处理后被反式激活。erbB2与GPCR在异源细胞中共表达会导致配体依赖性复合物形成和MAPK激活。此外,在注入GPCR激动剂的心脏特异性erbB2突变体中,MAPK激活和心脏收缩力明显受损。这些结果揭示了一种必需机制,即erbB2作为心脏中GPCR信号传导的共受体。erbB2在GPCR依赖性信号传导中的强制性作用在其他细胞系统中可能也很重要。