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当左侧似乎并不合适时:左右侧乳腺癌的表观遗传和生物电差异。

When left does not seem right: epigenetic and bioelectric differences between left- and right-sided breast cancer.

机构信息

National Council of Scientific and Technological Research (IHEM-CONICET), PC:5500, Mendoza, Argentina.

Medical School, National University of Cuyo, PC:5500, Mendoza, Argentina.

出版信息

Mol Med. 2022 Feb 5;28(1):15. doi: 10.1186/s10020-022-00440-5.

Abstract

BACKGROUND

During embryogenesis lateral symmetry is broken, giving rise to Left/Right (L/R) breast tissues with distinct identity. L/R-sided breast tumors exhibit consistently-biased incidence, gene expression, and DNA methylation. We postulate that a differential L/R tumor-microenvironment crosstalk generates different tumorigenesis mechanisms.

METHODS

We performed in-silico analyses on breast tumors of public datasets, developed xenografted tumors, and conditioned MDA-MB-231 cells with L/R mammary extracts.

RESULTS

We found L/R differential DNA methylation involved in embryogenic and neuron-like functions. Focusing on ion-channels, we discovered significant L/R epigenetic and bioelectric differences. Specifically, L-sided cells presented increased methylation of hyperpolarizing ion channel genes and increased Ca concentration and depolarized membrane potential, compared to R-ones. Functional consequences were associated with increased proliferation in left tumors, assessed by KI67 expression and mitotic count.

CONCLUSIONS

Our findings reveal considerable L/R asymmetry in cancer processes, and suggest specific L/R epigenetic and bioelectric differences as future targets for cancer therapeutic approaches in the breast and many other paired organs.

摘要

背景

在胚胎发生过程中,左右对称被打破,产生具有明显特征的左右(L/R)乳房组织。L/R 侧乳房肿瘤的发病率、基因表达和 DNA 甲基化始终存在偏倚。我们假设,L/R 肿瘤微环境的差异相互作用产生了不同的肿瘤发生机制。

方法

我们对公共数据集的乳房肿瘤进行了计算机分析,建立了异种移植肿瘤,并使用 L/R 乳腺提取物对 MDA-MB-231 细胞进行了条件培养。

结果

我们发现 L/R 差异 DNA 甲基化涉及胚胎发生和神经元样功能。我们专注于离子通道,发现了明显的 L/R 表观遗传和生物电差异。具体来说,与 R 侧相比,L 侧细胞中具有更多的超极化离子通道基因的甲基化,以及更高的 Ca 浓度和去极化的膜电位。通过 KI67 表达和有丝分裂计数评估,左肿瘤的增殖增加与功能后果相关。

结论

我们的发现揭示了癌症过程中相当大的 L/R 不对称性,并表明特定的 L/R 表观遗传和生物电差异可能成为未来乳腺癌和许多其他配对器官癌症治疗方法的靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fbd/8817536/a2b4aa6caeab/10020_2022_440_Fig1_HTML.jpg

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