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Integrated analysis reveals that STAT3 is central to the crosstalk between HER/ErbB receptor signaling pathways in human mammary epithelial cells

机译:综合分析表明STAT3是人类乳腺上皮细胞中HER / ErbB受体信号转导途径之间相互作用的关键

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摘要

Human epidermal growth factor receptors (HER, also known as ErbB) drive cellular proliferation, pro-survival and stress responses by activating several downstream kinases, in particular ERK, p38, JNK (SAPK), the PI3K/AKT, as well as various transcriptional regulators such as STAT3. When co-expressed, the first three members of HER family (HER1-3) can form homo- and hetero-dimers, and there is considerable evidence suggesting that the receptor dimers differentially activate intracellular signaling pathways. To better understand the interactions in this system, we pursued multi-factorial experiments where HER dimerization patterns and signaling pathways were rationally perturbed. We measured the activation of HER1-3 receptors and of the sentinel signaling proteins ERK, AKT, p38, JNK, STAT3 as a function of time in a panel of human mammary epithelial (HME) cells expressing different levels of HER1-3 stimulated with various ligand combinations. We hypothesized that the HER dimerization pattern is a better predictor of downstream signaling than the total receptor activation levels. We validated this hypothesis using a combination of model-based analysis to quantify the HER dimerization patterns, and by clustering the activation data in multiple ways to confirm that the HER receptor dimer is a better predictor of the signaling through p38, ERK and AKT pathways than the total HER receptor expression and activation levels. We then pursued combinatorial inhibition studies to identify the causal regulatory interactions between sentinel signaling proteins. Quantitative analysis of the collected data using the Modular Response Analysis (MRA) and its Bayesian Variable Selection Algorithm (BVSA) version allowed us to obtain a consensus regulatory interaction model, which revealed that STAT3 occupies a central role in the crosstalk between the studied pathways in HME cells. Results of the BVSA/MRA and cluster analysis were in agreement with each other.
机译:人类表皮生长因子受体(HER,也称为ErbB)通过激活几种下游激酶,特别是ERK,p38,JNK(SAPK),PI3K / AKT以及各种转录来驱动细胞增殖,促生存和应激反应STAT3等稳压器。当共表达时,HER家族的前三个成员(HER1-3)可以形成同源二聚体和异源二聚体,并且有大量证据表明受体二聚体可差异性激活细胞内信号通路。为了更好地了解此系统中的相互作用,我们进行了多因素实验,在这些实验中,HER二聚化模式和信号传导途径受到了合理干扰。我们在一组表达不同水平的HER1-3的人乳腺上皮(HME)细胞中测量了HER1-3受体和前哨信号蛋白ERK,AKT,p38,JNK,STAT3的激活与时间的关系。配体组合。我们假设HER二聚化模式比总受体激活水平更好地预测下游信号传导。我们结合了基于模型的分析以量化HER二聚化模式,并通过多种方式对激活数据进行聚类验证,以证实HER受体二聚体比p38,ERK和AKT途径更好地预测了信号传导,从而验证了这一假设。 HER受体的总表达和激活水平。然后,我们进行了组合抑制研究,以确定前哨信号蛋白之间的因果调节相互作用。使用模块化响应分析(MRA)及其贝叶斯变量选择算法(BVSA)版本对收集到的数据进行定量分析,使我们能够获得共识调节相互作用模型,该模型表明STAT3在研究途径之间的串扰中起着核心作用。 HME细胞。 BVSA / MRA和聚类分析的结果彼此一致。

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