| Literature DB >> 34957577 |
Chunyang Mo1, Jingxin Guo2,3, Jiachen Qin1, Xiaoying Zhang1, Yuxi Sun4, Hanjing Wei1, Dandan Cao1, Yiying Zhang1, Chengchen Zhao1, Yanhong Xiong1, Yong Zhang1, Yao Sun5, Li Shen2,3,6, Rui Yue1,7.
Abstract
Leptin receptor (LepR)-positive cells are key components of the bone marrow hematopoietic microenvironment, and highly enrich skeletal stem and progenitor cells that maintain homeostasis of the adult skeleton. However, the heterogeneity and lineage hierarchy within this population has been elusive. Using genetic lineage tracing and single-cell RNA sequencing, we found that Lepr-Cre labels most bone marrow stromal cells and osteogenic lineage cells in adult long bones. Integrated analysis of Lepr-Cre-traced cells under homeostatic and stress conditions revealed dynamic changes of the adipogenic, osteogenic, and periosteal lineages. Importantly, we discovered a Notch3+ bone marrow sub-population that is slow-cycling and closely associated with the vasculatures, as well as key transcriptional networks promoting osteo-chondrogenic differentiation. We also identified a Sca-1+ periosteal sub-population with high clonogenic activity but limited osteo-chondrogenic potential. Together, we mapped the transcriptomic landscape of adult LepR+ stem and progenitor cells and uncovered cellular and molecular mechanisms underlying their maintenance and lineage specification.Entities:
Keywords: LepR+ cells; bone marrow stromal cells; periosteum; single-cell RNA-seq; skeletal stem/progenitor cells
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Year: 2021 PMID: 34957577 PMCID: PMC8844986 DOI: 10.15252/embj.2021108415
Source DB: PubMed Journal: EMBO J ISSN: 0261-4189 Impact factor: 11.598