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WAVE3磷酸化调节乳腺癌中PI3K、TGF-β和EGF信号通路之间的相互作用。

WAVE3 phosphorylation regulates the interplay between PI3K, TGF-β, and EGF signaling pathways in breast cancer.

作者信息

Wang Wei, Kansakar Urna, Markovic Vesna, Wang Bingcheng, Sossey-Alaoui Khalid

机构信息

Department of Medicine, Rammelkamp Center for Research, Cleveland, OH, USA.

Case Western Reserve University School of Medicine, Cleveland, OH, USA.

出版信息

Oncogenesis. 2020 Oct 5;9(10):87. doi: 10.1038/s41389-020-00272-0.

Abstract

Both TGF-β and the PI3K-AKT signaling pathways are known activators of various intracellular pathways that regulate critical cellular functions, including cancer cell survival and proliferation. The interplay between these two oncogenic pathways plays a major role in promoting the initiation, growth, and progression of tumors, including breast cancers. The molecular underpinning of the inter-relationship between these pathways is, however, not fully understood, as is the role of WAVE3 phosphorylation in the regulation of tumor growth and progression. WAVE3 has been established as a major driver of the invasion-metastasis cascade in breast cancer and other tumors of epithelial origin. WAVE3 phosphorylation downstream of PI3K was also shown to regulate cell migration. Here we show that, in addition to PI3K, WAVE3 tyrosine phosphorylation can also be achieved downstream of TGF-β and EGF and that WAVE3 tyrosine phosphorylation is required for its oncogenic activity. Our in vitro analyses found loss of WAVE3 phosphorylation to significantly inhibit cell migration, as well as tumorsphere growth and invasion. In mouse models for breast cancer, loss of WAVE3 phosphorylation inhibited tumor growth of two aggressive breast cancer cell lines of triple-negative subtype. More importantly, we found that WAVE3 phosphorylation is also required for the activation of PI3K, TGF-β, and EGF signaling and their respective downstream effectors. Therefore, our study identified a novel function for WAVE3 in the regulation of breast cancer development and progression through the modulation of a positive feedback loop between WAVE3 and PI3K-TGF-β-EGF signaling pathways.

摘要

转化生长因子-β(TGF-β)和磷脂酰肌醇-3-激酶-蛋白激酶B(PI3K-AKT)信号通路均为多种细胞内通路的已知激活因子,这些通路可调节关键的细胞功能,包括癌细胞的存活和增殖。这两条致癌通路之间的相互作用在促进肿瘤(包括乳腺癌)的起始、生长和进展中起主要作用。然而,这些通路之间相互关系的分子基础尚未完全明确,波形肌动蛋白调节因子3(WAVE3)磷酸化在肿瘤生长和进展调控中的作用也不明确。WAVE3已被确认为乳腺癌和其他上皮源性肿瘤侵袭转移级联反应的主要驱动因子。PI3K下游的WAVE3磷酸化也被证明可调节细胞迁移。在此,我们表明,除PI3K外,TGF-β和表皮生长因子(EGF)下游也可实现WAVE3酪氨酸磷酸化,且WAVE3酪氨酸磷酸化是其致癌活性所必需的。我们的体外分析发现,WAVE3磷酸化缺失可显著抑制细胞迁移以及肿瘤球的生长和侵袭。在乳腺癌小鼠模型中,WAVE3磷酸化缺失抑制了三阴性亚型的两种侵袭性乳腺癌细胞系的肿瘤生长。更重要的是,我们发现WAVE3磷酸化也是激活PI3K、TGF-β和EGF信号及其各自下游效应器所必需的。因此,我们的研究通过调节WAVE3与PI3K-TGF-β-EGF信号通路之间的正反馈环,确定了WAVE3在乳腺癌发生发展调控中的新功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f744/7533250/e5e687db074d/41389_2020_272_Fig1_HTML.jpg

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