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RPTPγ 的缺失使乳腺组织酸化外排能力丧失,促进了恶性转化,导致早期肿瘤复发和生存时间缩短。

Loss of RPTPγ primes breast tissue for acid extrusion, promotes malignant transformation and results in early tumour recurrence and shortened survival.

机构信息

Department of Biomedicine, Aarhus University, Aarhus, Denmark.

Department of Clinical Genetics, University of Southern Denmark, Odense, Denmark.

出版信息

Br J Cancer. 2022 Oct;127(7):1226-1238. doi: 10.1038/s41416-022-01911-6. Epub 2022 Jul 11.

Abstract

BACKGROUND

While cellular metabolism and acidic waste handling accelerate during breast carcinogenesis, temporal patterns of acid-base regulation and underlying molecular mechanisms responding to the tumour microenvironment remain unclear.

METHODS

We explore data from human cohorts and experimentally investigate transgenic mice to evaluate the putative extracellular HCO-sensor Receptor Protein Tyrosine Phosphatase (RPTP)γ during breast carcinogenesis.

RESULTS

RPTPγ expression declines during human breast carcinogenesis and particularly in high-malignancy grade breast cancer. Low RPTPγ expression associates with poor prognosis in women with Luminal A or Basal-like breast cancer. RPTPγ knockout in mice favours premalignant changes in macroscopically normal breast tissue, accelerates primary breast cancer development, promotes malignant breast cancer histopathologies, and shortens recurrence-free survival. In RPTPγ knockout mice, expression of Na,HCO-cotransporter NBCn1-a breast cancer susceptibility protein-is upregulated in normal breast tissue but, contrary to wild-type mice, shows no further increase during breast carcinogenesis. Associated augmentation of Na,HCO-cotransport in normal breast tissue from RPTPγ knockout mice elevates steady-state intracellular pH, which has known pro-proliferative effects.

CONCLUSIONS

Loss of RPTPγ accelerates cellular net acid extrusion and elevates NBCn1 expression in breast tissue. As these effects precede neoplastic manifestations in histopathology, we propose that RPTPγ-dependent enhancement of Na,HCO-cotransport primes breast tissue for cancer development.

摘要

背景

在乳腺癌发生过程中,细胞代谢和酸性废物处理会加速,而酸碱调节的时空调控和应对肿瘤微环境的潜在分子机制尚不清楚。

方法

我们通过对人类队列进行数据分析,并通过实验研究转基因小鼠,来评估在乳腺癌发生过程中可能的细胞外 HCO-感受器受体蛋白酪氨酸磷酸酶(RPTP)γ。

结果

RPTPγ在人类乳腺癌发生过程中表达下降,特别是在高恶性程度的乳腺癌中。低 RPTPγ 表达与 Luminal A 或基底样乳腺癌患者的预后不良相关。在小鼠中敲除 RPTPγ 会促进宏观正常乳腺组织中的癌前变化,加速原发性乳腺癌的发展,促进恶性乳腺癌的组织病理学表现,并缩短无复发生存期。在 RPTPγ 敲除小鼠中,Na,HCO-共转运体 NBCn1-a(一种乳腺癌易感性蛋白)在正常乳腺组织中的表达上调,但与野生型小鼠不同的是,在乳腺癌发生过程中没有进一步增加。来自 RPTPγ 敲除小鼠的正常乳腺组织中 Na,HCO-共转运的增加会升高稳态细胞内 pH 值,这具有已知的促增殖作用。

结论

RPTPγ 的缺失会加速细胞净酸外排,并增加乳腺组织中的 NBCn1 表达。由于这些影响先于组织病理学中的肿瘤表现,我们提出 RPTPγ 依赖性增强的 Na,HCO-共转运使乳腺组织为癌症发展做好了准备。

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