Multiple cis-regulatory elements control prox1a expression in distinct lymphatic vascular beds

Author:

Panara Virginia12ORCID,Yu Hujun34ORCID,Peng Di1,Staxäng Karin5,Hodik Monika5,Filipek-Gorniok Beata1ORCID,Kazenwadel Jan6ORCID,Skoczylas Renae1ORCID,Mason Elizabeth3ORCID,Allalou Amin77,Harvey Natasha L.68ORCID,Haitina Tatjana9ORCID,Hogan Benjamin M.34ORCID,Koltowska Katarzyna12ORCID

Affiliation:

1. Uppsala University 1 Department of Immunology, Genetics and Pathology , , Uppsala 75185 , Sweden

2. Uppsala University 2 Beijer Gene and Neuro Laboratory , , Uppsala 75185 , Sweden

3. Peter MacCallum Cancer Centre 3 Organogenesis and Cancer Program , , Melbourne, VIC 3000 , Australia

4. University of Melbourne 4 Sir Peter MacCallum Department of Oncology and Department of Anatomy and Physiology , , Melbourne, VIC 3000 , Australia

5. Platform EM, Uppsala University 5 BioVis Core Facility , , Uppsala 75185 , Sweden

6. Centre for Cancer Biology, University of South Australia and SA Pathology 6 , Adelaide, South Australia 5001 , Australia

7. Uppsala University 7 , Department of Information Technology, Division of Visual Information and Interaction, and SciLifeLab BioImage Informatics Facility , , Uppsala 75185 , Sweden

8. Adelaide Medical School, University of Adelaide 8 , Adelaide, South Australia 5005 , Australia

9. Uppsala University 9 Department of Organismal Biology , , Uppsala 75236 , Sweden

Abstract

ABSTRACT During embryonic development, lymphatic endothelial cell (LEC) precursors are distinguished from blood endothelial cells by the expression of Prospero-related homeobox 1 (Prox1), which is essential for lymphatic vasculature formation in mouse and zebrafish. Prox1 expression initiation precedes LEC sprouting and migration, serving as the marker of specified LECs. Despite its crucial role in lymphatic development, Prox1 upstream regulation in LECs remains to be uncovered. SOX18 and COUP-TFII are thought to regulate Prox1 in mice by binding its promoter region. However, the specific regulation of Prox1 expression in LECs remains to be studied in detail. Here, we used evolutionary conservation and chromatin accessibility to identify enhancers located in the proximity of zebrafish prox1a active in developing LECs. We confirmed the functional role of the identified sequences through CRISPR/Cas9 mutagenesis of a lymphatic valve enhancer. The deletion of this region results in impaired valve morphology and function. Overall, our results reveal an intricate control of prox1a expression through a collection of enhancers. Ray-finned fish-specific distal enhancers drive pan-lymphatic expression, whereas vertebrate-conserved proximal enhancers refine expression in functionally distinct subsets of lymphatic endothelium.

Funder

Knut och Alice Wallenbergs Stiftelse

Ragnar Söderbergs stiftelse

Vetenskapsrådet

Kjell och Märta Beijers Stiftelse

National Health and Medical Research Council

Publisher

The Company of Biologists

Reference84 articles.

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