生物
Notch信号通路
细胞生物学
祖细胞
转录因子
细胞命运测定
信号转导
先天性淋巴细胞
细胞
细胞分化
T细胞
受体
干细胞
免疫学
基因
遗传学
先天免疫系统
免疫系统
作者
Kazuko Miyazaki,Kenta Horie,Hitomi Watanabe,Reiko Hidaka,Rina Hayashi,Norihito Hayatsu,Kentaro Fujiwara,Rei Kuwata,Takuya Uehata,Yotaro Ochi,Mikihito Takenaka,Risa Karakida Kawaguchi,Koichi Ikuta,Osamu Takeuchi,Seishi Ogawa,Katsuto Hozumi,Georg A. Holländer,Gen Kondoh,Taishin Akiyama,Masaki Miyazaki
标识
DOI:10.1101/gad.352111.124
摘要
External signals from the thymic microenvironment and the activities of lineage-specific transcription factors (TFs) instruct T-cell versus innate lymphoid cell (ILC) fates. However, mechanistic insights into how factors such as Notch1–Delta-like-4 (Dll4) signaling and E-protein TFs collaborate to establish T-cell identity remain rudimentary. Using multiple in vivo approaches and single-cell multiome analysis, we identified a feedback amplifier circuit that specifies fetal and adult T-cell fates. In early T progenitors (ETPs) in the fetal thymus, Notch signaling minimally lowered E-protein antagonist Id2 levels, and high Id2 abundance favored the differentiation of ETPs into ILCs. Conversely, in the adult thymus, Notch signaling markedly decreased Id2 abundance in ETPs, substantially elevating E-protein DNA binding and in turn promoting the activation of a T-cell lineage-specific gene expression program linked with V(D)J gene recombination and T-cell receptor signaling. Our findings indicate that, in the fetal versus the adult thymus, a simple feedback amplifier circuit dictated by Notch-mediated signals and Id2 abundance enforces T-cell identity and suppresses ILC development.
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