Literature DB >> 26202224

Renin expression in developing zebrafish is associated with angiogenesis and requires the Notch pathway and endothelium.

Sebastien A Rider1, Linda J Mullins2, Rachel F Verdon2, Calum A MacRae3, John J Mullins2.   

Abstract

Although renin is a critical regulatory enzyme of the cardiovascular system, its roles in organogenesis and the establishment of cardiovascular homeostasis remain unclear. Mammalian renin-expressing cells are widespread in embryonic kidneys but are highly restricted, specialized endocrine cells in adults. With a functional pronephros, embryonic zebrafish are ideal for delineating the developmental functions of renin-expressing cells and the mechanisms governing renin transcription. Larval zebrafish renin expression originates in the mural cells of the juxtaglomerular anterior mesenteric artery and subsequently at extrarenal sites. The role of renin was determined by assessing responses to renin-angiotensin system blockade, salinity variation, and renal perfusion ablation. Renin expression did not respond to renal flow ablation but was modulated by inhibition of angiotensin-converting enzyme and altered salinity. Our data in larval fish are consistent with conservation of renin's physiological functions. Using transgenic renin reporter fish, with mindbomb and cloche mutants, we show that Notch signaling and the endothelium are essential for developmental renin expression. After inhibition of angiogenesis, renin-expressing cells precede angiogenic sprouts. Arising from separate lineages, but relying on mutual interplay with endothelial cells, renin-expressing cells are among the earliest mural cells observed in larval fish, performing both endocrine and paracrine functions.
Copyright © 2015 the American Physiological Society.

Entities:  

Keywords:  angiogenesis; endothelium; notch; renin; zebrafish

Mesh:

Substances:

Year:  2015        PMID: 26202224      PMCID: PMC4572395          DOI: 10.1152/ajprenal.00247.2015

Source DB:  PubMed          Journal:  Am J Physiol Renal Physiol        ISSN: 1522-1466


  81 in total

1.  High-resolution in situ hybridization to whole-mount zebrafish embryos.

Authors:  Christine Thisse; Bernard Thisse
Journal:  Nat Protoc       Date:  2008       Impact factor: 13.491

2.  Cyclooxygenase-2 mediates increased renal renin content induced by low-sodium diet.

Authors:  P Harding; D H Sigmon; M E Alfie; P L Huang; M C Fishman; W H Beierwaltes; O A Carretero
Journal:  Hypertension       Date:  1997-01       Impact factor: 10.190

3.  Aberrant renal vascular morphology and renin expression in mutant mice lacking angiotensin-converting enzyme.

Authors:  K F Hilgers; V Reddi; J H Krege; O Smithies; R A Gomez
Journal:  Hypertension       Date:  1997-01       Impact factor: 10.190

Review 4.  Fate and plasticity of renin precursors in development and disease.

Authors:  R Ariel Gomez; Brian Belyea; Silvia Medrano; Ellen S Pentz; Maria Luisa S Sequeira-Lopez
Journal:  Pediatr Nephrol       Date:  2013-12-15       Impact factor: 3.714

5.  Organization of the pronephric filtration apparatus in zebrafish requires Nephrin, Podocin and the FERM domain protein Mosaic eyes.

Authors:  Albrecht G Kramer-Zucker; Stephanie Wiessner; Abbie M Jensen; Iain A Drummond
Journal:  Dev Biol       Date:  2005-09-15       Impact factor: 3.582

6.  Transparent adult zebrafish as a tool for in vivo transplantation analysis.

Authors:  Richard Mark White; Anna Sessa; Christopher Burke; Teresa Bowman; Jocelyn LeBlanc; Craig Ceol; Caitlin Bourque; Michael Dovey; Wolfram Goessling; Caroline Erter Burns; Leonard I Zon
Journal:  Cell Stem Cell       Date:  2008-02-07       Impact factor: 24.633

Review 7.  Renin-angiotensin system: upgrade of recent knowledge and perspectives.

Authors:  I Herichova; K Szantoova
Journal:  Endocr Regul       Date:  2013-01

8.  Inducible deletion of connexin 40 in adult mice causes hypertension and disrupts pressure control of renin secretion.

Authors:  Melanie Gerl; Josef Vöckl; Birgül Kurt; Toon A B van Veen; Armin Kurtz; Charlotte Wagner
Journal:  Kidney Int       Date:  2014-09-17       Impact factor: 10.612

9.  Mutation mapping and identification by whole-genome sequencing.

Authors:  Ignaty Leshchiner; Kristen Alexa; Peter Kelsey; Ivan Adzhubei; Christina A Austin-Tse; Jeffrey D Cooney; Heidi Anderson; Matthew J King; Rolf W Stottmann; Maija K Garnaas; Seungshin Ha; Iain A Drummond; Barry H Paw; Trista E North; David R Beier; Wolfram Goessling; Shamil R Sunyaev
Journal:  Genome Res       Date:  2012-05-03       Impact factor: 9.043

10.  Cloche, an early acting zebrafish gene, is required by both the endothelial and hematopoietic lineages.

Authors:  D Y Stainier; B M Weinstein; H W Detrich; L I Zon; M C Fishman
Journal:  Development       Date:  1995-10       Impact factor: 6.868

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  22 in total

Review 1.  Deciphering the Identity of Renin Cells in Health and Disease.

Authors:  Omar Guessoum; Alexandre de Goes Martini; Maria Luisa S Sequeira-Lopez; R Ariel Gomez
Journal:  Trends Mol Med       Date:  2020-11-05       Impact factor: 11.951

2.  Super-enhancers maintain renin-expressing cell identity and memory to preserve multi-system homeostasis.

Authors:  Maria Florencia Martinez; Silvia Medrano; Evan A Brown; Turan Tufan; Stephen Shang; Nadia Bertoncello; Omar Guessoum; Mazhar Adli; Brian C Belyea; Maria Luisa S Sequeira-Lopez; R Ariel Gomez
Journal:  J Clin Invest       Date:  2018-10-02       Impact factor: 14.808

3.  Ontogeny of renin gene expression in the chicken, Gallus gallus.

Authors:  Jess Hoy; Hiroko Nishimura; Theodore Mehalic; Eishin Yaoita; R Ariel Gomez; Robert Paxton; Maria Luisa S Sequeira-Lopez
Journal:  Gen Comp Endocrinol       Date:  2020-06-17       Impact factor: 2.822

Review 4.  Fate of Renin Cells During Development and Disease.

Authors:  R Ariel Gomez
Journal:  Hypertension       Date:  2017-01-30       Impact factor: 10.190

Review 5.  Angiotensin II Signal Transduction: An Update on Mechanisms of Physiology and Pathophysiology.

Authors:  Steven J Forrester; George W Booz; Curt D Sigmund; Thomas M Coffman; Tatsuo Kawai; Victor Rizzo; Rosario Scalia; Satoru Eguchi
Journal:  Physiol Rev       Date:  2018-07-01       Impact factor: 37.312

6.  Zebrafish mesonephric renin cells are functionally conserved and comprise two distinct morphological populations.

Authors:  Sebastien A Rider; Helen C Christian; Linda J Mullins; Amelia R Howarth; Calum A MacRae; John J Mullins
Journal:  Am J Physiol Renal Physiol       Date:  2017-02-08

Review 7.  Renin cells in homeostasis, regeneration and immune defence mechanisms.

Authors:  R Ariel Gomez; Maria Luisa S Sequeira-Lopez
Journal:  Nat Rev Nephrol       Date:  2018-01-30       Impact factor: 28.314

Review 8.  Novel Functions of Renin Precursors in Homeostasis and Disease.

Authors:  R Ariel Gomez; Maria Luisa S Sequeira-Lopez
Journal:  Physiology (Bethesda)       Date:  2016-01

Review 9.  Renin Cells, the Kidney, and Hypertension.

Authors:  Maria Luisa S Sequeira-Lopez; R Ariel Gomez
Journal:  Circ Res       Date:  2021-04-01       Impact factor: 17.367

Review 10.  Phylogeny and ontogeny of the renin-angiotensin system: Current view and perspectives.

Authors:  Hiroko Nishimura; Maria Luisa S Sequeira-Lopez
Journal:  Comp Biochem Physiol A Mol Integr Physiol       Date:  2020-12-29       Impact factor: 2.320

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