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FoxN1 阳性细胞中β-连环蛋白基因特异性缺失小鼠的胸腺上皮细胞成熟延迟。

Delayed maturation of thymic epithelium in mice with specific deletion of β-catenin gene in FoxN1 positive cells.

机构信息

Department of Cell Biology, Faculty of Biology, Complutense University of Madrid, C/ José Antonio Nováis 2, 28040, Madrid, Spain.

Health Research Institute, Hospital 12 de Octubre (imas12), Madrid, Spain.

出版信息

Histochem Cell Biol. 2021 Oct;156(4):315-332. doi: 10.1007/s00418-021-02012-w. Epub 2021 Jul 12.

Abstract

Wnt signalling pathways have been reported to be involved in thymus development but their precise role in the development of both thymic epithelium (TE) and thymocytes is controversial. Herein, we examined embryonic, postnatal and adult thymi of mice with a specific deletion of β-catenin gene in FoxN1 thymic epithelial cells (TECs). Together with a high postnatal mouse mortality, the analysis showed severe thymic hypocellularity, largely due an important reduction in numbers of developing thymocytes, and delayed, partially blocked maturation of mutant TECs. Affected TECs included largely cortical (c) TEC subsets, such as immature MTS20 TECs, Ly51 cTECs and a remarkable, rare Ly51MTS20MHCII cell subpopulation previously reported to contain thymic epithelial progenitor cells (TEPCs) (Ulyanchenko et al., Cell Rep 14:2819-2832, 2016). In addition, altered postnatal organization of mutant thymic medulla failed to organize a unique, central epithelial area. This delayed maturation of TE cell components correlated with low transcript production of some molecules reported to be masters for TEC maturation, such as EphB2, EphB3 and RANK. Changes in the thymic lymphoid component became particularly evident after birth, when molecules expressed by TECs and involved in early T-cell maturation, such as CCL25, CXCL12 and Dll4, exhibited minimal values. This represented a partial blockade of the progression of DN to DP cells and reduced proportions of this last thymocyte subset. At 1 month, in correlation with a significant increase in transcript production, the DP cell percentage increased in correlation with a significant fall in the number of mature TCRαβ thymocytes and peripheral T lymphocytes.

摘要

Wnt 信号通路已被报道参与胸腺发育,但它们在胸腺上皮细胞 (TEC) 和胸腺细胞发育中的精确作用仍存在争议。在此,我们研究了 FoxN1 胸腺上皮细胞 (TEC) 中β-连环蛋白基因特异性缺失的胚胎、新生和成年小鼠的胸腺。伴随着新生小鼠高死亡率,分析表明严重的胸腺细胞数量减少,主要是由于发育中的胸腺细胞数量显著减少,以及突变 TEC 成熟延迟和部分受阻。受影响的 TEC 包括大部分皮质 (c) TEC 亚群,如不成熟的 MTS20 TEC、Ly51 cTEC 以及先前报道的含有胸腺上皮祖细胞 (TEPC) 的罕见 Ly51MTS20MHCII 细胞亚群 (Ulyanchenko 等人,Cell Rep 14:2819-2832, 2016)。此外,突变的胸腺髓质的出生后组织改变未能组织一个独特的中央上皮区域。这种 TEC 细胞成分成熟延迟与一些报道为 TEC 成熟的主要分子的低转录产物相关,如 EphB2、EphB3 和 RANK。在出生后,当 TEC 表达并参与早期 T 细胞成熟的分子,如 CCL25、CXCL12 和 Dll4,表达值最小,这种变化在胸腺淋巴细胞成分中变得尤为明显。这代表了 DN 向 DP 细胞的进展的部分阻断,并减少了最后一个胸腺细胞亚群的比例。在 1 个月时,与转录产物的显著增加相关,DP 细胞的百分比增加与成熟 TCRαβ 胸腺细胞和外周 T 淋巴细胞数量的显著减少相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9b8/8550644/e0bf32b578a8/418_2021_2012_Fig1_HTML.jpg

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