Literature DB >> 16531124

The Na+/PO4 cotransporter SLC20A1 gene labels distinct restricted subdomains of the developing pronephros in Xenopus and zebrafish embryos.

Massimo Nichane1, Claude Van Campenhout, Hélène Pendeville, Marianne L Voz, Eric J Bellefroid.   

Abstract

The embryonic pronephric kidneys of Xenopus and zebrafish serve as models to study vertebrate nephrogenesis. Recently, multiple subdomains within the Xenopus pronephros have been defined based on the expression of several transport proteins. In contrast, very few studies on the expression of renal transporters have been conducted in zebrafish. We have recently shown that the anterior and posterior segments of the zebrafish pronephric duct may correspond to the proximal tubule and distal tubule/duct compartments of the Xenopus and higher vertebrate pronephros, respectively. Here, we report the embryonic expression pattern of the Na(+)/PO(4) cotransporter SLC20A1 (PiT1/Glvr-1) gene encoding a type III sodium-dependent phosphate cotransporter in Xenopus and zebrafish. In Xenopus, SLC20A1 mRNA is expressed in the somitic mesoderm and lower level of expression is detected in the neural tube, eye, and neural crest cells. From stage 25, SLC20A1 is also detectable in the developing pronephros where expression is restricted to the late portion of the distal pronephric tubules. In zebrafish, SLC20A1 is transcribed from mid-somitogenesis in the anterior part of the pronephros where its expression corresponds to the rostral portion of the expression of other proximal tubule-specific markers. Outside the pronephros, lower level of SLC20A1 expression is also observed in the posterior cardinal and caudal veins. Based on the SLC20A1 expression domain and that of other transporters, four segments have been defined within the zebrafish pronephros. Together, our data reveal that the zebrafish and Xenopus pronephros have non-identical proximo-distal organizations.

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Year:  2006        PMID: 16531124     DOI: 10.1016/j.modgep.2006.01.005

Source DB:  PubMed          Journal:  Gene Expr Patterns        ISSN: 1567-133X            Impact factor:   1.224


  14 in total

Review 1.  Kidney organogenesis in the zebrafish: insights into vertebrate nephrogenesis and regeneration.

Authors:  Gary F Gerlach; Rebecca A Wingert
Journal:  Wiley Interdiscip Rev Dev Biol       Date:  2012-10-16       Impact factor: 5.814

2.  Dynamic expression of the osmosensory channel trpv4 in multiple developing organs in zebrafish.

Authors:  Steve Mangos; Yan Liu; Iain A Drummond
Journal:  Gene Expr Patterns       Date:  2006-11-07       Impact factor: 1.224

3.  Cloning, localization, and functional expression of the electrogenic Na+ bicarbonate cotransporter (NBCe1) from zebrafish.

Authors:  Caroline R Sussman; Jinhua Zhao; Consuelo Plata; Jing Lu; Christopher Daly; Nathan Angle; Jennifer DiPiero; Iain A Drummond; Jennifer O Liang; Walter F Boron; Michael F Romero; Min-Hwang Chang
Journal:  Am J Physiol Cell Physiol       Date:  2009-07-22       Impact factor: 4.249

4.  odd-skipped related 2 is required for fin chondrogenesis in zebrafish.

Authors:  Pui-Ying Lam; Caramai N Kamei; Steve Mangos; Sudha Mudumana; Yan Liu; Iain A Drummond
Journal:  Dev Dyn       Date:  2013-09-06       Impact factor: 3.780

5.  Slc20a1b is essential for hematopoietic stem/progenitor cell expansion in zebrafish.

Authors:  Jiakui Chen; Gaofei Li; Junwei Lian; Ning Ma; Zhibin Huang; Jianchao Li; Zilong Wen; Wenqing Zhang; Yiyue Zhang
Journal:  Sci China Life Sci       Date:  2021-03-16       Impact factor: 6.038

6.  Jagged2a-notch signaling mediates cell fate choice in the zebrafish pronephric duct.

Authors:  Ming Ma; Yun-Jin Jiang
Journal:  PLoS Genet       Date:  2007-01-26       Impact factor: 5.917

Review 7.  Nephron Patterning: Lessons from Xenopus, Zebrafish, and Mouse Studies.

Authors:  Audrey Desgrange; Silvia Cereghini
Journal:  Cells       Date:  2015-09-11       Impact factor: 6.600

8.  Collective cell migration drives morphogenesis of the kidney nephron.

Authors:  Aleksandr Vasilyev; Yan Liu; Sudha Mudumana; Steve Mangos; Pui-Ying Lam; Arindam Majumdar; Jinhua Zhao; Kar-Lai Poon; Igor Kondrychyn; Vladimir Korzh; Iain A Drummond
Journal:  PLoS Biol       Date:  2009-01-06       Impact factor: 8.029

9.  The cdx genes and retinoic acid control the positioning and segmentation of the zebrafish pronephros.

Authors:  Rebecca A Wingert; Rori Selleck; Jing Yu; Huai-Dong Song; Zhu Chen; Anhua Song; Yi Zhou; Bernard Thisse; Christine Thisse; Andrew P McMahon; Alan J Davidson
Journal:  PLoS Genet       Date:  2007-10       Impact factor: 5.917

10.  Organization of the pronephric kidney revealed by large-scale gene expression mapping.

Authors:  Daniela Raciti; Luca Reggiani; Lars Geffers; Qiuhong Jiang; Francesca Bacchion; Astrid E Subrizi; Dave Clements; Christopher Tindal; Duncan R Davidson; Brigitte Kaissling; André W Brändli
Journal:  Genome Biol       Date:  2008-05-20       Impact factor: 13.583

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