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

单细胞转录组与生物功能的整合揭示了骨髓内皮细胞中不同的行为模式

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作者:Young-Woong Kim, Greta Zara, HyunJun Kang, Sergio Branciamore, Denis O'Meally, Yuxin Feng, Chia-Yi Kuan, Yingjun Luo, Michael S Nelson, Alex B Brummer, Russell Rockne, Zhen Bouman Chen, Yi Zheng, Angelo A Cardoso, Nadia Carlesso3

Abstract

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.

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