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Fli+ etsrp+ hemato-vascular progenitor cells proliferate at the lateral plate mesoderm during vasculogenesis in zebrafish.


ABSTRACT: BACKGROUND:Vasculogenesis, the de novo formation of blood vessels from precursor cells is critical for a developing embryo. However, the signals and events that dictate the formation of primary axial vessels remain poorly understood. METHODOLOGY/PRINCIPAL FINDINGS:In this study, we use ets-related protein-1 (etsrp), which is essential for vascular development, to analyze the early stages of vasculogenesis in zebrafish. We found etsrp(+) cells of the head, trunk and tail follow distinct developmental sequences. Using a combination of genetic, molecular and chemical approaches, we demonstrate that fli(+)etsrp(+) hemato-vascular progenitors (FEVPs) are proliferating at the lateral plate mesoderm (LPM). The Shh-VEGF-Notch-Hey2 signaling pathway controls the proliferation process, and experimental modulation of single components of this pathway alters etsrp(+) cell numbers at the LPM. CONCLUSIONS/SIGNIFICANCE:This study for the first time defines factors controlling proliferation, and cell numbers of pre-migratory FEVPs in zebrafish.

SUBMITTER: Chun CZ 

PROVIDER: S-EPMC3045372 | biostudies-literature | 2011 Feb

REPOSITORIES: biostudies-literature

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Fli+ etsrp+ hemato-vascular progenitor cells proliferate at the lateral plate mesoderm during vasculogenesis in zebrafish.

Chun Chang Zoon CZ   Remadevi Indu I   Schupp Marcus-Oliver MO   Samant Ganesh Vinayak GV   Pramanik Kallal K   Wilkinson George Albert GA   Ramchandran Ramani R  

PloS one 20110225 2


<h4>Background</h4>Vasculogenesis, the de novo formation of blood vessels from precursor cells is critical for a developing embryo. However, the signals and events that dictate the formation of primary axial vessels remain poorly understood.<h4>Methodology/principal findings</h4>In this study, we use ets-related protein-1 (etsrp), which is essential for vascular development, to analyze the early stages of vasculogenesis in zebrafish. We found etsrp(+) cells of the head, trunk and tail follow dis  ...[more]

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