生物
骨髓生成
自噬
细胞生物学
计算生物学
遗传学
干细胞
造血
细胞凋亡
作者
Jiaming Gu,Yanling Zhu,Huaisong Lin,Yuhua Huang,Yanqi Zhang,Qi Xing,Baoqiang Kang,Zhishuai Zhang,Mingquan Wang,Tiancheng Zhou,Yuchan Mai,Qianyu Chen,Fei Li,Xing Hu,Shuoting Wang,Jiaojiao Peng,Xinrui Guo,Bing Long,Junwei Wang,Minghui Gao
标识
DOI:10.1016/j.stemcr.2023.12.005
摘要
Emergency myelopoiesis (EM) is essential in immune defense against pathogens for rapid replenishing of mature myeloid cells. During the EM process, a rapid cell-cycle switch from the quiescent hematopoietic stem cells (HSCs) to highly proliferative myeloid progenitors (MPs) is critical. How the rapid proliferation of MPs during EM is regulated remains poorly understood. Here, we reveal that ATG7, a critical autophagy factor, is essential for the rapid proliferation of MPs during human myelopoiesis. Peripheral blood (PB)-mobilized hematopoietic stem/progenitor cells (HSPCs) with ATG7 knockdown or HSPCs derived from ATG7−/− human embryonic stem cells (hESCs) exhibit severe defect in proliferation during fate transition from HSPCs to MPs. Mechanistically, we show that ATG7 deficiency reduces p53 localization in lysosome for a potential autophagy-mediated degradation. Together, we reveal a previously unrecognized role of autophagy to regulate p53 for a rapid proliferation of MPs in human myelopoiesis.
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