Single-cell transcriptomic analysis identifies an immune-prone population in erythroid precursors during human ontogenesis

单细胞转录组分析鉴定出人类个体发育过程中红系前体细胞中易免疫的群体

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作者:Changlu Xu #, Jian He #, Hongtao Wang #, Yingnan Zhang #, Jing Wu #, Lu Zhao #, Yue Li, Jie Gao, Guangfeng Geng, Bingrui Wang, Xiaoyuan Chen, Zhaofeng Zheng, Biao Shen, Yang Zeng, Zhijie Bai, Hua Yang, Shujuan Shi, Fang Dong, Shihui Ma, Erlie Jiang, Tao Cheng, Yu Lan, Jiaxi Zhou, Bing Liu, Lihong Sh

Abstract

Nonimmune cells can have immunomodulatory roles that contribute to healthy development. However, the molecular and cellular mechanisms underlying the immunomodulatory functions of erythroid cells during human ontogenesis remain elusive. Here, integrated, single-cell transcriptomic studies of erythroid cells from the human yolk sac, fetal liver, preterm umbilical cord blood (UCB), term UCB and adult bone marrow (BM) identified classical and immune subsets of erythroid precursors with divergent differentiation trajectories. Immune-erythroid cells were present from the yolk sac to the adult BM throughout human ontogenesis but failed to be generated in vitro from human embryonic stem cells. Compared with classical-erythroid precursors, these immune-erythroid cells possessed dual erythroid and immune regulatory networks, showed immunomodulatory functions and interacted more frequently with various innate and adaptive immune cells. Our findings provide important insights into the nature of immune-erythroid cells and their roles during development and diseases.

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