Telesco Shannon E, Vadigepalli Rajanikanth, Radhakrishnan Ravi
University of Pennsylvania, Department of Bioengineering, Philadelphia, PA, USA.
Biotechnol J. 2013 Dec;8(12):1452-64. doi: 10.1002/biot.201300022. Epub 2013 Dec 4.
In the ErbB/HER family of receptor tyrosine kinases, the deregulation of the EGFR/ErbB1/HER1, HER2/ErbB2, and HER3/ErbB3 kinases is associated with several cancers, while the HER4/ErbB4 kinase has been shown to play an anti-carcinogenic role in certain tumors. We present molecular and network models of HER4/ErbB4 activation and signaling in order to elucidate molecular mechanisms of activation and rationalize the effects of the clinically identified HER4 somatic mutants. Our molecular-scale simulations identify the important role played by the interactions within the juxtamembrane region during the activation process. Our results also support the hypothesis that the HER4 mutants may heterodimerize but not activate, resulting in blockage of the HER4-STAT5 differentiation pathway, in favor of the proliferative PI3K/AKT pathway. Translating our molecular simulation results into a cellular pathway model of wild type versus mutant HER4 signaling, we are able to recapitulate the major features of the PI3K/AKT and JAK/STAT activation downstream of HER4. Our model predicts that the signaling downstream of the wild type HER4 is enriched for the JAK-STAT pathway, whereas downstream of the mutant HER4 is enriched for the PI3K/AKT pathway. HER4 mutations may hence constitute a cellular shift from a program of differentiation to that of proliferation.
在受体酪氨酸激酶的表皮生长因子受体(ErbB)/人表皮生长因子受体(HER)家族中,表皮生长因子受体(EGFR)/ErbB1/HER1、HER2/ErbB2和HER3/ErbB3激酶的失调与多种癌症相关,而HER4/ErbB4激酶在某些肿瘤中已显示出抗癌作用。我们提出了HER4/ErbB4激活和信号传导的分子及网络模型,以阐明激活的分子机制,并使临床上鉴定出的HER4体细胞突变的作用合理化。我们的分子尺度模拟确定了近膜区域内的相互作用在激活过程中所起的重要作用。我们的结果还支持以下假设:HER4突变体可能形成异二聚体但不激活,从而导致HER4-信号转导子和转录激活子5(STAT5)分化途径受阻,有利于增殖性磷脂酰肌醇-3激酶(PI3K)/蛋白激酶B(AKT)途径。将我们的分子模拟结果转化为野生型与突变型HER4信号传导的细胞途径模型后,我们能够概括HER4下游PI3K/AKT和Janus激酶(JAK)/信号转导子和转录激活子(STAT)激活的主要特征。我们的模型预测,野生型HER4下游的信号传导以JAK-STAT途径为主,而突变型HER4下游的信号传导以PI3K/AKT途径为主。因此,HER4突变可能构成细胞从分化程序向增殖程序的转变。