Essential roles of Her2/erbB2 in cardiac development and function.

Alejandra Negro, Bhawanjit K Brar, Kuo-Fen Lee
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引用次数: 201

Abstract

The tyrosine kinase receptor erbB2, also known in humans as Her2, is a member of the epidermal growth factor receptor (EGFR or erbB1) family, which also includes erbB3 and erbB4. The erbBs were discovered in an avian erythroblastosis tumor virus and exhibited similarities to human EGFR (Yarden and Sliwkowski, 2001). Her2/erbB2 is highly expressed in many cancer types. Its overexpression is correlated with a poor prognosis for breast and ovarian cancer patients. ErbB receptors bind to a family of growth factors, termed neuregulins/heregulin (NRG/HRG), which comprise NRG-1, -2, -3, and -4 and include multiple isoforms. ErbB2/Her2 is an orphan receptor that does not bind ligand alone but heterodimerizes with the other erbB receptors for NRG signaling. ErbB2 is expressed in multiple neuronal and non-neuronal tissues in embryos and adult animals, including the heart. Genetic data demonstrated that erbB2 is required for normal embryonic development of neural crest-derived cranial sensory neurons. ErbB2/Her2-null mutant embryos of a trabeculation defect die before embryonic day (E) 11. To study its role at later stages of development, we generated a transgenic mouse line that specifically expresses the rat erbB2 cDNA in the heart under the control of the cardiac-specific alpha-myosin heavy chain promoter. When crossed into the null background, the expression of the rat erbB2 cDNA rescued the cardiac phenotype in the erbB2-null mutant mice that survive until birth but display an absence of Schwann cells and a severe loss of both motor and spinal sensory neurons. To study the role of erbB2 in the adult heart, we generated conditional mutant mice carrying a cardiac-restricted deletion of erbB2. These erbB2 conditional mutants exhibited multiple independent parameters of dilated cardiomyopathy, including chamber dilation, wall thinning, and decreased contractility. Interestingly, treatment of breast cancers overexpressing erbB2 with Herceptin (Trastuzumab), a humanized monoclonal antibody specific to the extracellular domain of erbB2, results in some patients developing cardiac dysfunction. The adverse effect is increased significantly in those patients who also receive the chemotherapeutical agent anthracycline. We found that erbB2-deficient cardiac myocytes are more susceptible to anthracycline-induced cytotoxicity. These results suggest that erbB2 signaling in the heart is essential for the prevention of dilated cardiomyopathy. These lines of mice provide models with which to elucidate the molecular and cellular mechanisms by which erbB2 signaling regulates cardiac functions. These mice also will provide important information for devising strategies to mitigate the cardiotoxic effects of Herceptin treatment, allowing for the potential expanded use of this drug to treat all cancers overexpressing erbB2.

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Her2/erbB2在心脏发育和功能中的重要作用。
酪氨酸激酶受体erbB2,在人类中也被称为Her2,是表皮生长因子受体(EGFR或erbB1)家族的一员,该家族还包括erbB3和erbB4。这些erbb是在一种禽红母细胞病肿瘤病毒中发现的,与人类EGFR有相似之处(Yarden和Sliwkowski, 2001)。Her2/erbB2在许多癌症类型中高表达。其过表达与乳腺癌和卵巢癌患者预后不良相关。ErbB受体与一系列生长因子结合,称为神经调节因子/heregulin (NRG/HRG),包括NRG-1、-2、-3和-4,并包括多种亚型。ErbB2/Her2是一种孤儿受体,它不单独与配体结合,而是与其他erbB受体异源二聚体一起参与NRG信号传导。ErbB2在胚胎和成年动物的多种神经元和非神经元组织中表达,包括心脏。遗传数据表明erbB2是神经嵴源性颅感觉神经元正常胚胎发育所必需的。小梁缺陷的ErbB2/ her2缺失突变胚胎在胚胎日之前死亡(E) 11。为了研究其在后期发育中的作用,我们在心脏特异性α -肌球蛋白重链启动子的控制下,建立了一种转基因小鼠系,在心脏中特异性表达大鼠erbB2 cDNA。当进入空白背景时,大鼠erbB2 cDNA的表达挽救了erbB2缺失突变小鼠的心脏表型,这些小鼠存活到出生,但表现出雪旺细胞的缺失以及运动和脊髓感觉神经元的严重损失。为了研究erbB2在成人心脏中的作用,我们产生了携带心脏限制性erbB2缺失的条件突变小鼠。这些erbB2条件突变体表现出扩张性心肌病的多个独立参数,包括心室扩张、壁变薄和收缩力下降。有趣的是,用Herceptin(曲妥珠单抗)治疗过表达erbB2的乳腺癌,会导致一些患者出现心功能障碍。Herceptin是一种针对erbB2细胞外结构域的人源化单克隆抗体。在同时接受化疗药物蒽环类药物的患者中,不良反应明显增加。我们发现erbb2缺陷的心肌细胞更容易受到蒽环类药物诱导的细胞毒性的影响。这些结果表明心脏erbB2信号对于预防扩张型心肌病至关重要。这些小鼠系为阐明erbB2信号调节心脏功能的分子和细胞机制提供了模型。这些小鼠也将为设计减轻赫赛汀治疗的心脏毒性作用的策略提供重要信息,允许这种药物的潜在扩展使用,以治疗所有过度表达erbB2的癌症。
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