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H1047R PIK3CA 癌基因在 HER2+乳腺上皮细胞中诱导类似衰老的状态、多效性和急性 HSP90 依赖性。

The H1047R PIK3CA oncogene induces a senescence-like state, pleiotropy and acute HSP90 dependency in HER2+ mammary epithelial cells.

机构信息

Department of Life Sciences, Shiv Nadar University, Uttar Pradesh, India.

IDEAYA Biosciences, South San Francisco, CA, USA.

出版信息

Carcinogenesis. 2019 Oct 16;40(10):1179-1190. doi: 10.1093/carcin/bgz118.

Abstract

In pre-clinical models, co-existence of Human Epidermal Growth Factor Receptor-2 (HER2)-amplification and PI3K catalytic subunit (PIK3CA) mutations results in aggressive, anti-HER2 therapy-resistant breast tumors. This is not always reflected in clinical setting. We speculated that the complex interaction between the HER2 and PIK3CA oncogenes is responsible for such inconsistency. We performed series of biochemical, molecular and cellular assays on genetically engineered isogenic mammary epithelial cell lines and breast cancer cells expressing both oncogenes. In vitro observations were validated in xenografts models. We showed that H1047R, one of the most common PIK3CA mutations, is responsible for endowing a senescence-like state in mammary epithelial cells overexpressing HER2. Instead of imposing a permanent growth arrest characteristic of oncogene-induced senescence, the proteome secreted by the mutant cells promotes stem cell enrichment, angiogenesis, epithelial-to-mesenchymal transition, altered immune surveillance and acute vulnerability toward HSP90 inhibition. We inferred that the pleiotropism, as observed here, conferred by the mutated oncogene, depending on the host microenvironment, contributes to conflicting pre-clinical and clinical characteristics of HER2+, mutated PIK3CA-bearing tumor cells. We also came up with a plausible model for evolution of breast tumors from mammary epithelial cells harboring these two molecular lesions.

摘要

在临床前模型中,人表皮生长因子受体 2(HER2)扩增和 PI3K 催化亚基(PIK3CA)突变的共存导致侵袭性、抗 HER2 治疗耐药的乳腺癌。但这种情况在临床环境中并不总是存在。我们推测,HER2 和 PIK3CA 癌基因之间的复杂相互作用是导致这种不一致的原因。我们在表达这两种癌基因的基因工程同基因乳腺上皮细胞系和乳腺癌细胞中进行了一系列生化、分子和细胞测定。在异种移植模型中验证了体外观察结果。我们表明,最常见的 PIK3CA 突变之一 H1047R 负责赋予过表达 HER2 的乳腺上皮细胞一种衰老样状态。与致癌基因诱导的衰老所施加的永久生长停滞不同,突变细胞分泌的蛋白质组促进了干细胞富集、血管生成、上皮-间充质转化、免疫监视改变和对 HSP90 抑制的急性易感性。我们推断,这里观察到的突变癌基因的多效性取决于宿主微环境,有助于解释 HER2+、突变 PIK3CA 携带的肿瘤细胞的临床前和临床特征之间的冲突。我们还提出了一个合理的模型,用于解释这些两种分子病变的乳腺上皮细胞如何演变为乳腺癌。

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