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Integration of single-cell transcriptomes and biological function reveals distinct behavioral patterns in bone marrow endothelium

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Title
Integration of single-cell transcriptomes and biological function reveals distinct behavioral patterns in bone marrow endothelium
Author(s)
Young Woong Kim; Zara, Greta; Kang, HyunJun; Branciamore, Sergio; O’Meally, Denis; Feng, Yuxin; Kuan, Chia-Yi; Luo, Yingjun; Nelson, Michael S.; Brummer, Alex B.; Rockne, Russell; Chen, Zhen Bouman; Zheng, Yi; Cardoso, Angelo A.; Carlesso, Nadia
Publication Date
2022-11
Journal
Nature Communications, v.13, no.1
Publisher
Nature Research
Abstract
© 2022, The Author(s).Heterogeneity of endothelial cell (EC) populations reflects their diverse functions in maintaining tissue’s homeostasis. However, their phenotypic, molecular, and functional properties are not entirely mapped. We use the Tie2-CreERT2;Rosa26-tdTomato reporter mouse to trace, profile, and cultivate primary ECs from different organs. As paradigm platform, we use this strategy to study bone marrow endothelial cells (BMECs). Single-cell mRNA sequencing of primary BMECs reveals that their diversity and native molecular signatures is transitorily preserved in an ex vivo culture that conserves key cell-to-cell microenvironment interactions. Macrophages sustain BMEC cellular diversity and expansion and preserve sinusoidal-like BMECs ex vivo. Endomucin expression discriminates BMECs in populations exhibiting mutually exclusive properties and distinct sinusoidal/arterial and tip/stalk signatures. In contrast to arterial-like, sinusoidal-like BMECs are short-lived, form 2D-networks, contribute to in vivo angiogenesis, and support hematopoietic stem/progenitor cells in vitro. This platform can be extended to other organs’ ECs to decode mechanistic information and explore therapeutics.
URI
https://pr.ibs.re.kr/handle/8788114/12554
DOI
10.1038/s41467-022-34425-z
ISSN
2041-1723
Appears in Collections:
Center for Genome Engineering(유전체 교정 연구단) > 1. Journal Papers (저널논문)
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