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单独强制消除CD24干细胞样乳腺癌标志物可通过控制氧化应激来促进放射抗性。

Forced extinction of CD24 stem-like breast cancer marker alone promotes radiation resistance through the control of oxidative stress.

作者信息

Bensimon Julie, Biard Denis, Paget Vincent, Goislard Maud, Morel-Altmeyer Sandrine, Konge Julie, Chevillard Sylvie, Lebeau Jérôme

机构信息

CEA, DSV, iRCM, SREIT, Laboratoire de Cancérologie Expérimentale (LCE), Fontenay-aux-Roses, France.

CEA, DSV, IMETI, SEPIA, Fontenay-aux-Roses, Cedex, France.

出版信息

Mol Carcinog. 2016 Mar;55(3):245-54. doi: 10.1002/mc.22273. Epub 2015 Jan 16.

Abstract

Along with CD44, CD24 is a key marker of breast cancer stem cells (CSCs), frequently defined by CD24(-)/CD44(+) labeling. Among all phenotypes classically attributed to breast CD24(-)/CD44(+) cancer cells, radiation resistance has been extensively described and seen as being implicated in radiotherapy failure. Our previous data indicated that CD24(-) cells constitute a radiation-resistant subpopulation transitory selected by high doses of ionizing radiation. However, little is known about the biological role of CD24 in breast cancers, and no function has been assigned to CD24 in radiation response. Here, CD24 expression was induced in CD24(-) cells or knocked-down in CD24(+) cells. We show that forced extinction of CD24 expression is associated with decreased proliferation rate, lower levels of reactive oxygen species (ROS) and decreased genomic instability. On the opposite when CD24 is artificially expressed in CD24(-) cells, proliferation rates in vitro and in vivo, ROS levels and genomic instability are enhanced. Moreover, we observe that loss of CD24 expression leads to radiation resistance, by preventing radiation-induced cell death and promoting generation of progeny in relation to lower G2/M blockade and a smaller proportion of polyploid cells. Finally, control of ROS levels appears to be the key event in the CD24-mediated radiation response. For the first time, CD24 is proposed as a direct actor in radiation response of breast cancer cells, independently of CD44 expression. These findings could have interesting applications in evaluating the intrinsic radiation response of primary tumors.

摘要

与CD44一样,CD24是乳腺癌干细胞(CSCs)的关键标志物,通常通过CD24(-)/CD44(+)标记来定义。在所有经典归因于乳腺CD24(-)/CD44(+)癌细胞的表型中,辐射抗性已被广泛描述,并被视为与放疗失败有关。我们之前的数据表明,CD24(-)细胞构成了一个由高剂量电离辐射短暂选择的抗辐射亚群。然而,关于CD24在乳腺癌中的生物学作用知之甚少,并且在辐射反应中尚未赋予CD24任何功能。在此,在CD24(-)细胞中诱导CD24表达或在CD24(+)细胞中敲低CD24表达。我们表明,CD24表达的强制消除与增殖率降低、活性氧(ROS)水平降低和基因组不稳定性降低有关。相反,当在CD24(-)细胞中人工表达CD24时,体外和体内的增殖率、ROS水平和基因组不稳定性都会增强。此外,我们观察到CD24表达的缺失通过防止辐射诱导的细胞死亡并促进子代的产生,导致辐射抗性,这与较低的G2/M期阻滞和较小比例的多倍体细胞有关。最后,ROS水平的控制似乎是CD24介导的辐射反应中的关键事件。首次提出CD24是乳腺癌细胞辐射反应中的直接作用因子,独立于CD44表达。这些发现可能在评估原发性肿瘤的内在辐射反应方面有有趣的应用。

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