A critical role of RUNX1 in governing megakaryocyte-primed hematopoietic stem cell differentiation

运行x1 巨核细胞 造血 生物 干细胞 细胞生物学 细胞分化 造血干细胞 免疫学 遗传学 基因
作者
Chen Wang,Zhaowei Tu,Xin Cai,Weinan Wang,Ashley Kuenzi Davis,Kalpana Nattamai,Aditi Paranjpe,Phillip Dexheimer,Jianqiang Wu,Lei Huang,Hartmut Geiger,Gang Huang,Yi Zheng
出处
期刊:Blood Advances [American Society of Hematology]
卷期号:7 (11): 2590-2605 被引量:2
标识
DOI:10.1182/bloodadvances.2022008591
摘要

Abstract As a transcription factor in the RUNT domain core-binding factor family, RUNX1 is crucial in multiple stages of hematopoiesis, and its mutation can cause familial platelet disorder with a predisposition to acute myeloid leukemia. Previous work has established that RUNX1 is involved in the maturation of megakaryocytes (MKs) and the production of platelets. Recent studies have shown that there exists a subpopulation of hematopoietic stem cells (HSCs) with relatively high expression of von Willebrand factor and CD41 at the apex of the HSC hierarchy, termed MK-HSCs, which can give rise to MKs without going through the traditional differentiation trajectory from HSC via MPP (multipotent progenitors) and MEP (megakaryocyte–erythroid progenitor). Here, by using Runx1F/FMx1-Cre mouse model, we discovered that the MK-HSC to MK direct differentiation can occur within 1 cell division, and RUNX1 is an important regulator in the process. Runx1 knockout results in a drastic decrease in platelet counts and a severe defect in the differentiation from MK-HSCs to MKs. Single cell RNA sequencing (RNAseq) analysis shows that MK-HSCs have a distinct gene expression signature compared with non-MK–HSCs, and Runx1 deletion alters the platelet and MK-related gene expression in MK-HSCs. Furthermore, bulk RNAseq and Cut&Run analyses show that RUNX1 binds to multiple essential MK or platelet developmental genes, such as Spi1, Selp, and Itga2b and regulates their expressions in MK-HSCs. Thus, by modulating the expression of MK-related genes, RUNX1 governs the direct differentiation from MK-HSCs to MKs and platelets.
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