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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Thymic epithelial cells require p53 to support their long-term function in thymopoiesis in mice
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Thymic epithelial cells require p53 to support their long-term function in thymopoiesis in mice

机译:胸腺上皮细胞需要p53以支持他们在小鼠中的胸腺过量症的长期功能

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Thymic epithelial cells (TECs) provide crucial microenvironments for T-cell development and tolerance induction. As the regular function of the thymus declines with age, it is of fundamental and clinical relevance to decipher new determinants that control TEC homeostasis in vivo. Beyond its recognized tumor suppressive function, p53 controls several immunoregulatory pathways. To study the cell-autonomous role of p53 in thymic epithelium functioning, we developed and analyzed mice with conditional inactivation of Trp53 in TECs (p53cKO). We report that loss of p53 primarily disrupts the integrity of medullary TEC(mTEC) niche, a defect that spreads to the adult cortical TEC compartment. Mechanistically, we found that p53 controls specific and broad programs of mTEC differentiation. Apart from restraining the expression and responsiveness of the receptor activator of NF-kappa B (RANK), which is central for mTEC differentiation, deficiency of p53 in TECs altered multiple functional modules of the mTEC transcriptome, including tissue-restricted antigen expression. As a result, p53cKO mice presented premature defects in mTEC-dependent regulatory T-cell differentiation and thymocyte maturation, which progressed to a failure in regular and regenerative thymopoiesis and peripheral T-cell homeostasis in the adulthood. Lastly, peripheral signs of altered immunological tolerance unfold in mutant mice and in immunodeficient mice that received p53cKO-derived thymocytes. Our findings position p53 as a novel molecular determinant of thymic epithelium function throughout life.
机译:胸腺上皮细胞(TECS)为T细胞发育和耐受性诱导提供了关键的微环境。随着胸腺量的常规功能随着年龄的增长而下降,与在体内控制TEC稳态的新决定因素的破译新的决定因素具有基本和临床关联。除了认可的肿瘤抑制功能之外,P53控制了几种免疫调节途径。为了研究P53在胸腺上皮功能中的细胞 - 自主作用,我们开发和分析了TECS(P53CKO)中TRP53条件失活的小鼠。我们认为P53的损失主要破坏髓质TEC(MTEC)利基的完整性,这是一种蔓延到成人皮质TEC室的缺陷。机械地,我们发现P53控制了MTEC差异的特定和广泛的程序。除了抑制NF-Kappa B(等级)的受体激活剂的表达和反应,这是MTEC分化的核心,TECS中P53的缺乏改变了MTEC转录组的多个功能模块,包括组织限制抗原表达。结果,p53cko小鼠在MTEC依赖性调节性T细胞分化和胸腺细胞成熟中呈现过早缺陷,其在成年期间进展到过度和再生胸腺过滤器和外周T细胞稳态的失败。最后,在突变小鼠和接受p53cko衍生的胸腺细胞的免疫缺陷小鼠中展开的改变改变的免疫耐受的外周迹象。我们的发现位置P53作为整个寿命整个寿生质的新型分子决定因素。

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