Literature DB >> 24950425

Developmental hematopoiesis: ontogeny, genetic programming and conservation.

Aldo Ciau-Uitz1, Rui Monteiro2, Arif Kirmizitas1, Roger Patient3.   

Abstract

Hematopoietic stem cells (HSCs) sustain blood production throughout life and are of pivotal importance in regenerative medicine. Although HSC generation from pluripotent stem cells would resolve their shortage for clinical applications, this has not yet been achieved mainly because of the poor mechanistic understanding of their programming. Bone marrow HSCs are first created during embryogenesis in the dorsal aorta (DA) of the midgestation conceptus, from where they migrate to the fetal liver and, eventually, the bone marrow. It is currently accepted that HSCs emerge from specialized endothelium, the hemogenic endothelium, localized in the ventral wall of the DA through an evolutionarily conserved process called the endothelial-to-hematopoietic transition. However, the endothelial-to-hematopoietic transition represents one of the last steps in HSC creation, and an understanding of earlier events in the specification of their progenitors is required if we are to create them from naïve pluripotent cells. Because of their ready availability and external development, zebrafish and Xenopus embryos have enormously facilitated our understanding of the early developmental processes leading to the programming of HSCs from nascent lateral plate mesoderm to hemogenic endothelium in the DA. The amenity of the Xenopus model to lineage tracing experiments has also contributed to the establishment of the distinct origins of embryonic (yolk sac) and adult (HSC) hematopoiesis, whereas the transparency of the zebrafish has allowed in vivo imaging of developing blood cells, particularly during and after the emergence of HSCs in the DA. Here, we discuss the key contributions of these model organisms to our understanding of developmental hematopoiesis.
Copyright © 2014 ISEH - International Society for Experimental Hematology. Published by Elsevier Inc. All rights reserved.

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Year:  2014        PMID: 24950425     DOI: 10.1016/j.exphem.2014.06.001

Source DB:  PubMed          Journal:  Exp Hematol        ISSN: 0301-472X            Impact factor:   3.084


  54 in total

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Review 2.  The zebrafish: A fintastic model for hematopoietic development and disease.

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3.  Renal Anemia Model Mouse Established by Transgenic Rescue with an Erythropoietin Gene Lacking Kidney-Specific Regulatory Elements.

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4.  LSD1/KDM1A promotes hematopoietic commitment of hemangioblasts through downregulation of Etv2.

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5.  Anisotropic organization of circumferential actomyosin characterizes hematopoietic stem cells emergence in the zebrafish.

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6.  Gata2b is a restricted early regulator of hemogenic endothelium in the zebrafish embryo.

Authors:  Emerald Butko; Martin Distel; Claire Pouget; Bart Weijts; Isao Kobayashi; Kevin Ng; Christian Mosimann; Fabienne E Poulain; Adam McPherson; Chih-Wen Ni; David L Stachura; Natasha Del Cid; Raquel Espín-Palazón; Nathan D Lawson; Richard Dorsky; Wilson K Clements; David Traver
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Review 7.  Cell signaling pathways involved in hematopoietic stem cell specification.

Authors:  Albert D Kim; David L Stachura; David Traver
Journal:  Exp Cell Res       Date:  2014-12-10       Impact factor: 3.905

8.  Dissecting BMP signaling input into the gene regulatory networks driving specification of the blood stem cell lineage.

Authors:  Arif Kirmizitas; Stuart Meiklejohn; Aldo Ciau-Uitz; Rachel Stephenson; Roger Patient
Journal:  Proc Natl Acad Sci U S A       Date:  2017-06-06       Impact factor: 11.205

9.  Spatiotemporal expression and transcriptional regulation of heme oxygenase and biliverdin reductase genes in zebrafish (Danio rerio) suggest novel roles during early developmental periods of heightened oxidative stress.

Authors:  Andrew Holowiecki; Britton O'Shields; Matthew J Jenny
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Review 10.  Understanding the regulation of vertebrate hematopoiesis and blood disorders - big lessons from a small fish.

Authors:  Anne L Robertson; Serine Avagyan; John M Gansner; Leonard I Zon
Journal:  FEBS Lett       Date:  2016-09-25       Impact factor: 4.124

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