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p53和Fas/CD95在小鼠神经祖细胞对电离辐射反应中的作用

Involvement of p53 and Fas/CD95 in murine neural progenitor cell response to ionizing irradiation.

作者信息

Semont Alexandra, Nowak Ewa B, Silva Lages Céline, Mathieu Céline, Mouthon Marc-André, May Evelyne, Allemand Isabelle, Millet Pascal, Boussin François D

机构信息

Laboratoire de RadioPathologie, DRR/DSV, CEA, IPSC, Fontenay-aux-Roses, France.

出版信息

Oncogene. 2004 Nov 4;23(52):8497-508. doi: 10.1038/sj.onc.1207821.

Abstract

We investigated the role of tumor suppressor p53 and Fas (CD95/APO-1), a member of the tumor necrosis factor receptor family, in neural progenitors response to gamma-irradiation exposure. Telencephalic cells were obtained from wild-type C57Bl/6, or p53-/- or fas-/-, 15-day-old mouse embryos. They were cultured in conditions allowing neural progenitors to form proliferating clusters (neurospheres). A 2 Gy gamma-irradiation induced a G1 cell cycle arrest and triggered apoptosis in wild-type neural progenitor cultures in correlation with an enhanced expression of p53 and of its downstream target p21(WAF1), both of them acquiring a nuclear localization. These effects did not occur in p53-/- neural progenitors demonstrating the central role played by p53 in their response to ionizing radiation. Furthermore, the monoclonal antibody Jo2 directed against Fas induced apoptosis of wild type but not of fas-/- neural progenitors, indicating the existence of a functional Fas signaling pathway in neural progenitors. Ionizing radiation induced an increase of Fas membrane expression related to a p53-dependent increase of fas mRNA expression in wild-type neural progenitors. Moreover, fas-/- neural progenitors exhibited delayed radiation-induced apoptosis compared to wild-type cells. Therefore, these findings establish a role for Fas/CD95 related to p53 in the response of neural progenitors to gamma-radiation exposure. Similar mechanisms could be triggered in neural progenitors in case of different stresses during brain development or in the course of various diseases affecting the adult brain.

摘要

我们研究了肿瘤抑制因子p53以及肿瘤坏死因子受体家族成员Fas(CD95/APO-1)在神经祖细胞对γ射线照射反应中的作用。从野生型C57Bl/6、p53基因敲除或Fas基因敲除的15日龄小鼠胚胎中获取端脑细胞。将它们在能使神经祖细胞形成增殖性细胞团(神经球)的条件下培养。一次2 Gy的γ射线照射诱导野生型神经祖细胞培养物出现G1期细胞周期阻滞并引发凋亡,这与p53及其下游靶点p21(WAF1)表达增强相关,二者均获得核定位。这些效应在p53基因敲除的神经祖细胞中未出现,表明p53在其对电离辐射的反应中起核心作用。此外,针对Fas的单克隆抗体Jo2可诱导野生型而非Fas基因敲除的神经祖细胞凋亡,表明神经祖细胞中存在功能性Fas信号通路。电离辐射导致野生型神经祖细胞中Fas膜表达增加,这与p53依赖的Fas mRNA表达增加有关。而且,与野生型细胞相比,Fas基因敲除的神经祖细胞辐射诱导的凋亡出现延迟。因此,这些发现确立了Fas/CD95在神经祖细胞对γ射线照射反应中与p53相关的作用。在脑发育过程中不同应激情况下或在影响成体脑的各种疾病过程中,神经祖细胞可能触发类似机制。

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