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Runx1+ vascular smooth muscle cells are essential for hematopoietic stem and progenitor cell development in vivo

Authors :
Gonzalez Galofre, Zaniah N
Kilpatrick, Alastair M
Marques, Madalena
Sá da Bandeira, Diana
Ventura, Telma
Gomez Salazar, Mario
Bouilleau, Léa
Marc, Yvan
Barbosa, Ana B
Rossi, Fiona
Beltran, Mariana
van de Werken, Harmen J G
van IJcken, Wilfred F J
Henderson, Neil C
Forbes, Stuart J
Crisan, Mihaela
Gonzalez Galofre, Zaniah N
Kilpatrick, Alastair M
Marques, Madalena
Sá da Bandeira, Diana
Ventura, Telma
Gomez Salazar, Mario
Bouilleau, Léa
Marc, Yvan
Barbosa, Ana B
Rossi, Fiona
Beltran, Mariana
van de Werken, Harmen J G
van IJcken, Wilfred F J
Henderson, Neil C
Forbes, Stuart J
Crisan, Mihaela
Source :
Gonzalez Galofre , Z N , Kilpatrick , A M , Marques , M , Sá da Bandeira , D , Ventura , T , Gomez Salazar , M , Bouilleau , L , Marc , Y , Barbosa , A B , Rossi , F , Beltran , M , van de Werken , H J G , van IJcken , W F J , Henderson , N C , Forbes , S J & Crisan , M 2024 , ' Runx1+ vascular smooth muscle cells are essential for hematopoietic stem and progenitor cell development in vivo ' , Nature Communications , vol. 15 , no. 1 , 1653 .
Publication Year :
2024

Abstract

Hematopoietic stem cells (HSCs) produce all essential cellular components of the blood. Stromal cell lines supporting HSCs follow a vascular smooth muscle cell (vSMC) differentiation pathway, suggesting that some hematopoiesis-supporting cells originate from vSMC precursors. These pericyte-like precursors were recently identified in the aorta-gonad-mesonephros (AGM) region; however, their role in the hematopoietic development in vivo remains unknown. Here, we identify a subpopulation of NG2 +Runx1 + perivascular cells that display a sclerotome-derived vSMC transcriptomic profile. We show that deleting Runx1 in NG2 + cells impairs the hematopoietic development in vivo and causes transcriptional changes in pericytes/vSMCs, endothelial cells and hematopoietic cells in the murine AGM. Importantly, this deletion leads also to a significant reduction of HSC reconstitution potential in the bone marrow in vivo. This defect is developmental, as NG2 +Runx1 + cells were not detected in the adult bone marrow, demonstrating the existence of a specialised pericyte population in the HSC-generating niche, unique to the embryo.

Details

Database :
OAIster
Journal :
Gonzalez Galofre , Z N , Kilpatrick , A M , Marques , M , Sá da Bandeira , D , Ventura , T , Gomez Salazar , M , Bouilleau , L , Marc , Y , Barbosa , A B , Rossi , F , Beltran , M , van de Werken , H J G , van IJcken , W F J , Henderson , N C , Forbes , S J & Crisan , M 2024 , ' Runx1+ vascular smooth muscle cells are essential for hematopoietic stem and progenitor cell development in vivo ' , Nature Communications , vol. 15 , no. 1 , 1653 .
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1430692257
Document Type :
Electronic Resource