首页> 美国卫生研究院文献>Journal of Radiation Research >Irradiation-injured brain tissues can self-renew in the absence of the pivotal tumor suppressor p53 in the medaka (Oryzias latipes) embryo
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Irradiation-injured brain tissues can self-renew in the absence of the pivotal tumor suppressor p53 in the medaka (Oryzias latipes) embryo

机译:在青aka中缺少枢纽性肿瘤抑制因子p53的情况下受辐照伤害的脑组织可以自我更新(东方稻)胚胎

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摘要

The tumor suppressor protein, p53, plays pivotal roles in regulating apoptosis and proliferation in the embryonic and adult central nervous system (CNS) following neuronal injuries such as those induced by ionizing radiation. There is increasing evidence that p53 negatively regulates the self-renewal of neural stem cells in the adult murine brain; however, it is still unknown whether p53 is essential for self-renewal in the injured developing CNS. Previously, we demonstrated that the numbers of apoptotic cells in medaka ( Oryzias latipes ) embryos decreased in the absence of p53 at 12–24 h after irradiation with 10-Gy gamma rays. Here, we used histology to examine the later morphological development of the irradiated medaka brain. In p53-deficient larvae, the embryonic brain possessed similar vacuoles in the brain and retina, although the vacuoles were much smaller and fewer than those found in wild-type embryos. At the time of hatching (6 days after irradiation), no brain abnormality was observed. In contrast, severe disorganized neuronal arrangements were still present in the brain of irradiated wild-type embryos. Our present results demonstrated that self-renewal of the brain tissue completed faster in the absence of p53 than wild type at the time of hatching because p53 reduces the acute severe neural apoptosis induced by irradiation, suggesting that p53 is not essential for tissue self-renewal in developing brain.
机译:肿瘤抑制蛋白p53在调节神经元损伤(如电离辐射引起的损伤)后在胚胎和成年中枢神经系统(CNS)中的凋亡和增殖中起关键作用。越来越多的证据表明,p53负调控成年鼠脑中神经干细胞的自我更新。然而,尚不清楚p53是否对受伤的中枢神经系统自我更新至关重要。以前,我们证明了在照射10 Gyγ射线后12-24 h,在没有p53的情况下,(Oryzias latipes)胚胎中的凋亡细胞数量减少了。在这里,我们使用组织学检查了辐照的高aka脑的后期形态发育。在缺乏p53的幼虫中,胚胎脑在大脑和视网膜中具有相似的液泡,尽管液泡比野生型胚胎中的液泡小得多且少。在孵化时(照射后6天),未观察到脑部异常。相反,受辐照的野生型胚胎的大脑中仍然存在严重混乱的神经元排列。我们目前的研究结果表明,在孵化时不存在p53的情况下,在没有p53的情况下,脑组织的自我更新完成速度要快于野生型,因为p53可以减少辐射引起的急性严重神经细胞凋亡,这表明p53对于组织自我更新不是必需的在大脑发育中。

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