造血
祖细胞
基因组不稳定性
旁分泌信号
干细胞
癌症研究
癌变
生物
细胞生物学
遗传学
DNA损伤
基因
受体
DNA
作者
Xiaolin Guo,Yiding Wang,Y. G. Liu,Lei Chu,Hua Zhu,Ye Hu,Renyan Wu,Hongyu Xie,Juan Yu,Li Shuiping,Zhi‐Qi Xiong,Ruoyan Li,Fang Ke,Lei Chen,Guoqiang Chen,Liang Chen,Fan Bai,Tariq Enver,Guohong Li,Huaifang Li
出处
期刊:Nature
[Nature Portfolio]
日期:2024-12-04
卷期号:637 (8045): 402-411
被引量:5
标识
DOI:10.1038/s41586-024-08307-x
摘要
The maintenance of genomic integrity in rapidly proliferating cells is a substantial challenge during embryonic development1–3. Although numerous cell-intrinsic mechanisms have been revealed4–7, little is known about genome-protective effects and influences of developmental tissue microenvironments on tissue-forming cells. Here we show that fetal liver hepatocytes provide protection to haematopoietic stem and progenitor cell (HSPC) genomes. Lineage tracing and depletion in mice demonstrated that delayed hepatocyte development in early fetal livers increased the chromosomal instability of newly colonizing HSPCs. In addition, HSPCs developed tolerance to genotoxins in hepatocyte-conditioned medium, suggesting that hepatocytes protect the HSPC genome in a paracrine manner. Proteomic analyses demonstrated the enrichment of fetuin-A in hepatocyte-conditioned medium but not in early fetal livers. Fetuin-A activates a Toll-like receptor pathway to prevent pathogenic R-loop accumulation in HSPCs undergoing DNA replication and gene transcription in the fetal liver. Numerous haematopoietic regulatory genes frequently involved in leukaemogenic mutations are associated with R-loop-enriched regions. In Fetua-knockout mice, HSPCs showed increased genome instability and susceptibility to malignancy induction. Moreover, low concentrations of fetuin-A correlated with the oncogenesis of childhood leukaemia. Therefore, we uncover a mechanism operating in developmental tissues that offers tissue-forming cell genome protection and is implicated in developmental-related diseases. A mechanism is uncovered that results in fetal hepatocytes having a paracrine role in providing genome protection to haematopoietic stem and progenitor cells.
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