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胸腺上皮细胞放大表观遗传噪音以促进免疫耐受。

Thymic epithelial cells amplify epigenetic noise to promote immune tolerance.

作者信息

Gamble Noah, Caldwell Jason A, McKeever Joshua, Kaiser Caroline, Bradu Alexandra, Dooley Peyton J, Klemm Sandy, Greenleaf William J, Hibino Narutoshi, Dinner Aaron R, Koh Andrew S

机构信息

Department of Pathology, University of Chicago, Chicago, IL, USA.

Graduate Program in Biophysical Sciences, University of Chicago, Chicago, IL, USA.

出版信息

Nature. 2025 Aug 20. doi: 10.1038/s41586-025-09424-x.

Abstract

Cellular plasticity is a principal feature of vertebrate adaptation, tissue repair and tumorigenesis. However, the mechanisms that regulate the stability of somatic cell fates remain unclear. Here, we use the somatic plasticity of thymic epithelial cells, which facilitates the selection of a self-discriminating T cell repertoire, as a physiological model system to show that fluctuations in background chromatin accessibility in nucleosome-dense regions are amplified during thymic epithelial maturation for the ectopic expression of genes restricted to other specialized cell types. This chromatin destabilization was not dependent on AIRE-induced transcription but was preceded by repression of the tumour suppressor p53. Augmenting p53 activity indirectly stabilized chromatin, inhibited ectopic transcription, limited cellular plasticity and caused multi-organ autoimmunity. Genomic regions with heightened chromatin accessibility noise were selectively enriched for nucleosome-destabilizing polymeric AT tracts and were associated with elevated baseline DNA damage and transcriptional initiation. Taken together, our findings define molecular levers that modulate cell fate integrity and are used by thymic epithelial cells for immunological tolerance.

摘要

细胞可塑性是脊椎动物适应、组织修复和肿瘤发生的主要特征。然而,调节体细胞命运稳定性的机制仍不清楚。在这里,我们利用胸腺上皮细胞的体细胞可塑性(其有助于选择自我识别的T细胞库)作为生理模型系统,以表明在胸腺上皮成熟过程中,核小体密集区域背景染色质可及性的波动会被放大,从而导致仅限于其他特殊细胞类型的基因异位表达。这种染色质不稳定不依赖于AIRE诱导的转录,而是在肿瘤抑制因子p53被抑制之前发生。增强p53活性可间接稳定染色质、抑制异位转录、限制细胞可塑性并导致多器官自身免疫。染色质可及性噪声增加的基因组区域选择性地富集了破坏核小体的聚合AT序列,并与基线DNA损伤增加和转录起始相关。综上所述,我们的研究结果定义了调节细胞命运完整性的分子杠杆,胸腺上皮细胞利用这些杠杆实现免疫耐受。

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