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Series GSE65751 Query DataSets for GSE65751
Status Public on May 21, 2015
Title Lymphatic vessels arise from a niche of multipotent angioblasts within the floor of the cardinal vein
Organism Danio rerio
Experiment type Expression profiling by high throughput sequencing
Summary How cells acquire their fate is a fundamental question in both developmental and regenerative biology. Multipotent progenitors undergo gradual cell fate restriction in response to temporal and positional cues from the microenvironment, the nature of which is far from being clear. In the case of the lymphatic system, venous endothelial cells are thought to give rise to lymphatic vessels, through a process of trans-differentiation. Upon expression of a set of transcription factors, venous cells acquire a lymphatic fate, and bud out to generate the lymphatic vasculature. In this work we challenge this view and show that while lymphatic endothelial cells (LECs) do arise in the Cardinal Vein (CV), they do so from a previously uncharacterized pool of multipotent angioblasts. Using lymphatic-specific transgenic zebrafish, in combination with endothelial photoconvertible reporters, and long-term live imaging, we demonstrate that these multipotent angioblasts can generate not only lymphatic, but also arterious, and venous fates. We further reveal that the underlying endoderm serves as a source of Wnt5b, which acts as a lymphatic inductive signal, promoting the angioblast-to-lymphatic transition. Moreover, Wnt5b induced lymphatic specification in human embryonic stem cells- derived vascular progenitors, suggesting that this process is evolutionary conserved. Our results uncover a novel mechanism of lymphatic vessel formation, whereby multipotent angioblasts and not venous endothelial cells give rise to the lymphatic endothelium, and provide the first characterization of their inductive niche. More broadly, our findings highlight the CV as a plastic and heterogeneous structure containing different cell populations, analogous to the hematopoietic niche in the aortic floor.
 
Overall design Following Kaede photoconversion of dorsal or ventral halves of the PCV in Tg(fli1:gal4;uasKaede) embryos at 24 hpf, 6 embryos per group were used for FACS isolation of Kaede photconverted (red) ECs.
 
Contributor(s) Nicenboim J, Yaniv K
Citation(s) 25992545
Submission date Feb 09, 2015
Last update date May 15, 2019
Contact name Naftalie Senderovich
E-mail(s) naftalys@tx.technion.ac.il
Organization name Technion - Israel Institute of Technology
Department Biology
Lab Itai Yanai
Street address Technion city, Faculty of biology
City Haifa
State/province International
ZIP/Postal code 3200003
Country Israel
 
Platforms (1)
GPL18413 Illumina HiSeq 2500 (Danio rerio)
Samples (4)
GSM1604055 V_red_ZF_sample_0007
GSM1604056 V_red_ZF_sample_0011
GSM1604057 d_red_ZF_sample_0008
Relations
BioProject PRJNA274951
SRA SRP053359

Download family Format
SOFT formatted family file(s) SOFTHelp
MINiML formatted family file(s) MINiMLHelp
Series Matrix File(s) TXTHelp

Supplementary file Size Download File type/resource
GSE65751_PCV_expression.txt.gz 129.5 Kb (ftp)(http) TXT
SRA Run SelectorHelp
Processed data are available on Series record
Raw data are available in SRA

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