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Murine AGM single-cell profiling identifies a continuum of hemogenic endothelium differentiation marked by ACE.
Fadlullah, Muhammad Zaki Hidayatullah; Neo, Wen Hao; Lie-A-Ling, Michael; Thambyrajah, Roshana; Patel, Rahima; Mevel, Renaud; Aksoy, Irène; Do Khoa, Nam; Savatier, Pierre; Fontenille, Laura; Baker, Syed Murtuza; Rattray, Magnus; Kouskoff, Valerie; Lacaud, Georges.
Afiliação
  • Fadlullah MZH; Stem Cell Biology Group, Cancer Research UK Manchester Institute, The University of Manchester, Manchester, United Kingdom.
  • Neo WH; Stem Cell Biology Group, Cancer Research UK Manchester Institute, The University of Manchester, Manchester, United Kingdom.
  • Lie-A-Ling M; Stem Cell Biology Group, Cancer Research UK Manchester Institute, The University of Manchester, Manchester, United Kingdom.
  • Thambyrajah R; Program in Cancer Research, Institut Hospital del Mar d'Investigacions Mèdiques, Centro de Investigación Biomédica en Red de Oncología (CIBERONC), Barcelona, Spain.
  • Patel R; Stem Cell Biology Group, Cancer Research UK Manchester Institute, The University of Manchester, Manchester, United Kingdom.
  • Mevel R; Stem Cell Biology Group, Cancer Research UK Manchester Institute, The University of Manchester, Manchester, United Kingdom.
  • Aksoy I; Université Lyon 1, INSERM, Stem Cell and Brain Research Institute U1208, Bron, France.
  • Do Khoa N; Azelead, Montpellier, France; and.
  • Savatier P; Université Lyon 1, INSERM, Stem Cell and Brain Research Institute U1208, Bron, France.
  • Fontenille L; Azelead, Montpellier, France; and.
  • Baker SM; Division of Informatics, Imaging and Data Sciences, Faculty of Biology, Medicine and Health; and.
  • Rattray M; Division of Informatics, Imaging and Data Sciences, Faculty of Biology, Medicine and Health; and.
  • Kouskoff V; Division of Developmental Biology & Medicine, The University of Manchester, Manchester, United Kingdom.
  • Lacaud G; Stem Cell Biology Group, Cancer Research UK Manchester Institute, The University of Manchester, Manchester, United Kingdom.
Blood ; 139(3): 343-356, 2022 01 20.
Article em En | MEDLINE | ID: mdl-34517413
In vitro generation and expansion of hematopoietic stem cells (HSCs) holds great promise for the treatment of any ailment that relies on bone marrow or blood transplantation. To achieve this, it is essential to resolve the molecular and cellular pathways that govern HSC formation in the embryo. HSCs first emerge in the aorta-gonad-mesonephros (AGM) region, where a rare subset of endothelial cells, hemogenic endothelium (HE), undergoes an endothelial-to-hematopoietic transition (EHT). Here, we present full-length single-cell RNA sequencing (scRNA-seq) of the EHT process with a focus on HE and dorsal aorta niche cells. By using Runx1b and Gfi1/1b transgenic reporter mouse models to isolate HE, we uncovered that the pre-HE to HE continuum is specifically marked by angiotensin-I converting enzyme (ACE) expression. We established that HE cells begin to enter the cell cycle near the time of EHT initiation when their morphology still resembles endothelial cells. We further demonstrated that RUNX1 AGM niche cells consist of vascular smooth muscle cells and PDGFRa+ mesenchymal cells and can functionally support hematopoiesis. Overall, our study provides new insights into HE differentiation toward HSC and the role of AGM RUNX1+ niche cells in this process. Our expansive scRNA-seq datasets represents a powerful resource to investigate these processes further.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Células-Tronco Hematopoéticas / Embrião de Mamíferos / Hemangioblastos / Hematopoese Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Células-Tronco Hematopoéticas / Embrião de Mamíferos / Hemangioblastos / Hematopoese Idioma: En Ano de publicação: 2022 Tipo de documento: Article