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非典型细胞周期调控促进乳腺发育和肿瘤发生过程中乳腺干细胞的扩增。

Atypical cell cycle regulation promotes mammary stem cell expansion during mammary development and tumourigenesis.

机构信息

Department of Biomedical Sciences, University of Windsor, Windsor, ON, N9B 3P4, Canada.

WE-SPARK Health Institute, University of Windsor, Windsor, ON, N9B 3P4, Canada.

出版信息

Breast Cancer Res. 2024 Jun 28;26(1):106. doi: 10.1186/s13058-024-01862-1.

Abstract

BACKGROUND

The cell cycle of mammary stem cells must be tightly regulated to ensure normal homeostasis of the mammary gland to prevent abnormal proliferation and susceptibility to tumorigenesis. The atypical cell cycle regulator, Spy1 can override cell cycle checkpoints, including those activated by the tumour suppressor p53 which mediates mammary stem cell homeostasis. Spy1 has also been shown to promote expansion of select stem cell populations in other developmental systems. Spy1 protein is elevated during proliferative stages of mammary gland development, is found at higher levels in human breast cancers, and promotes susceptibility to mammary tumourigenesis when combined with loss of p53. We hypothesized that Spy1 cooperates with loss of p53 to increase susceptibility to tumour initiation due to changes in susceptible mammary stem cell populations during development and drives the formation of more aggressive stem like tumours.

METHODS

Using a transgenic mouse model driving expression of Spy1 within the mammary gland, mammary development and stemness were assessed. These mice were intercrossed with p53 null mice to study the tumourigenic properties of Spy1 driven p53 null tumours, as well as global changes in signaling via RNA sequencing analysis.

RESULTS

We show that elevated levels of Spy1 leads to expansion of mammary stem cells, even in the presence of p53, and an increase in mammary tumour formation. Spy1-driven tumours have an increased cancer stem cell population, decreased checkpoint signaling, and demonstrate an increase in therapy resistance. Loss of Spy1 decreases tumor onset and reduces the cancer stem cell population.

CONCLUSIONS

This data demonstrates the potential of Spy1 to expand mammary stem cell populations and contribute to the initiation and progression of aggressive, breast cancers with increased cancer stem cell populations.

摘要

背景

乳腺干细胞的细胞周期必须受到严格调控,以确保乳腺的正常稳态,防止异常增殖和易发生肿瘤形成。非典型细胞周期调节剂 Spy1 可以绕过细胞周期检查点,包括那些由肿瘤抑制因子 p53 激活的检查点,p53 介导乳腺干细胞稳态。Spy1 还被证明可以促进其他发育系统中特定干细胞群体的扩增。Spy1 蛋白在乳腺发育的增殖期升高,在人类乳腺癌中水平较高,并与 p53 缺失结合时促进乳腺肿瘤发生的易感性。我们假设 Spy1 与 p53 缺失协同作用,通过改变发育过程中易感乳腺干细胞群体,增加对肿瘤起始的易感性,并驱动形成更具侵袭性的类干细胞肿瘤。

方法

使用在乳腺中驱动 Spy1 表达的转基因小鼠模型,评估乳腺发育和干细胞特性。这些小鼠与 p53 缺失小鼠进行杂交,以研究 Spy1 驱动的 p53 缺失肿瘤的致瘤特性,以及通过 RNA 测序分析研究信号的全局变化。

结果

我们表明,Spy1 水平升高会导致乳腺干细胞的扩增,即使在存在 p53 的情况下也是如此,并且会增加乳腺肿瘤的形成。Spy1 驱动的肿瘤具有更高的癌症干细胞群体,减少了检查点信号,并表现出对治疗的耐药性增加。Spy1 的缺失会降低肿瘤的发生并减少癌症干细胞群体。

结论

该数据表明 Spy1 具有扩增乳腺干细胞群体的潜力,并有助于具有更高癌症干细胞群体的侵袭性乳腺癌的起始和进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8f9/11212383/cf059f92c886/13058_2024_1862_Fig1_HTML.jpg

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