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Postembryonic Nephrogenesis and Persistence of Six2-Expressing Nephron Progenitor Cells in the Reptilian Kidney

New nephron formation (nephrogenesis) ceases in mammals around birth and is completely absent in adults. In contrast, postembryonic nephrogenesis is well documented in the mesonephric kidneys of fishes and amphibians. The transient mesonephros in reptiles (including birds) and mammals is replaced by...

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Autores principales: Camarata, Troy, Howard, Alexis, Elsey, Ruth M., Raza, Sarah, O’Connor, Alice, Beatty, Brian, Conrad, Jack, Solounias, Nikos, Chow, Priscilla, Mukta, Saima, Vasilyev, Aleksandr
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4856328/
https://www.ncbi.nlm.nih.gov/pubmed/27144443
http://dx.doi.org/10.1371/journal.pone.0153422
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author Camarata, Troy
Howard, Alexis
Elsey, Ruth M.
Raza, Sarah
O’Connor, Alice
Beatty, Brian
Conrad, Jack
Solounias, Nikos
Chow, Priscilla
Mukta, Saima
Vasilyev, Aleksandr
author_facet Camarata, Troy
Howard, Alexis
Elsey, Ruth M.
Raza, Sarah
O’Connor, Alice
Beatty, Brian
Conrad, Jack
Solounias, Nikos
Chow, Priscilla
Mukta, Saima
Vasilyev, Aleksandr
author_sort Camarata, Troy
collection PubMed
description New nephron formation (nephrogenesis) ceases in mammals around birth and is completely absent in adults. In contrast, postembryonic nephrogenesis is well documented in the mesonephric kidneys of fishes and amphibians. The transient mesonephros in reptiles (including birds) and mammals is replaced by the metanephros during embryogenesis. Thus, one may speculate that postembryonic nephrogenesis is restricted to the mesonephric kidney. Previous reports have suggested the metanephros of non-avian reptiles (hereafter reptiles) may continually form nephrons throughout life. We investigated the presence of adult nephrogenesis in reptiles by examining adult kidneys from several species including Trachemys scripta, Chrysemys picta, Boa constrictor, Tupinambis tegu, Anolis carolinensis, and Alligator mississipiensis among others. We found that all major reptilian groups (Testudines, Crocodylia, and Squamates) showed the presence of adult nephrogenesis. The total amount of nephrogenesis varied greatly between species with turtles displaying the highest density of nephrogenesis. In contrast, we were unable to detect adult nephrogenesis in monotremes, and in the iguanid A. carolinensis. Nephron progenitor cells express the transcription factor Six2, which in mammals, becomes downregulated as the progenitor cell population is exhausted and nephrogenesis ends. Using the alligator as a model, we were able to detect Six2-positive cap mesenchyme cells in the adult kidney, which spatially correlated with areas of nephrogenesis. These results suggest that the metanephric kidney of reptiles has maintained the ability to continually grow new nephrons during postembryonic life, a process lost early in mammalian evolution, likely due to the persistence of a Six2-expressing progenitor cell population.
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spelling pubmed-48563282016-05-07 Postembryonic Nephrogenesis and Persistence of Six2-Expressing Nephron Progenitor Cells in the Reptilian Kidney Camarata, Troy Howard, Alexis Elsey, Ruth M. Raza, Sarah O’Connor, Alice Beatty, Brian Conrad, Jack Solounias, Nikos Chow, Priscilla Mukta, Saima Vasilyev, Aleksandr PLoS One Research Article New nephron formation (nephrogenesis) ceases in mammals around birth and is completely absent in adults. In contrast, postembryonic nephrogenesis is well documented in the mesonephric kidneys of fishes and amphibians. The transient mesonephros in reptiles (including birds) and mammals is replaced by the metanephros during embryogenesis. Thus, one may speculate that postembryonic nephrogenesis is restricted to the mesonephric kidney. Previous reports have suggested the metanephros of non-avian reptiles (hereafter reptiles) may continually form nephrons throughout life. We investigated the presence of adult nephrogenesis in reptiles by examining adult kidneys from several species including Trachemys scripta, Chrysemys picta, Boa constrictor, Tupinambis tegu, Anolis carolinensis, and Alligator mississipiensis among others. We found that all major reptilian groups (Testudines, Crocodylia, and Squamates) showed the presence of adult nephrogenesis. The total amount of nephrogenesis varied greatly between species with turtles displaying the highest density of nephrogenesis. In contrast, we were unable to detect adult nephrogenesis in monotremes, and in the iguanid A. carolinensis. Nephron progenitor cells express the transcription factor Six2, which in mammals, becomes downregulated as the progenitor cell population is exhausted and nephrogenesis ends. Using the alligator as a model, we were able to detect Six2-positive cap mesenchyme cells in the adult kidney, which spatially correlated with areas of nephrogenesis. These results suggest that the metanephric kidney of reptiles has maintained the ability to continually grow new nephrons during postembryonic life, a process lost early in mammalian evolution, likely due to the persistence of a Six2-expressing progenitor cell population. Public Library of Science 2016-05-04 /pmc/articles/PMC4856328/ /pubmed/27144443 http://dx.doi.org/10.1371/journal.pone.0153422 Text en © 2016 Camarata et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Camarata, Troy
Howard, Alexis
Elsey, Ruth M.
Raza, Sarah
O’Connor, Alice
Beatty, Brian
Conrad, Jack
Solounias, Nikos
Chow, Priscilla
Mukta, Saima
Vasilyev, Aleksandr
Postembryonic Nephrogenesis and Persistence of Six2-Expressing Nephron Progenitor Cells in the Reptilian Kidney
title Postembryonic Nephrogenesis and Persistence of Six2-Expressing Nephron Progenitor Cells in the Reptilian Kidney
title_full Postembryonic Nephrogenesis and Persistence of Six2-Expressing Nephron Progenitor Cells in the Reptilian Kidney
title_fullStr Postembryonic Nephrogenesis and Persistence of Six2-Expressing Nephron Progenitor Cells in the Reptilian Kidney
title_full_unstemmed Postembryonic Nephrogenesis and Persistence of Six2-Expressing Nephron Progenitor Cells in the Reptilian Kidney
title_short Postembryonic Nephrogenesis and Persistence of Six2-Expressing Nephron Progenitor Cells in the Reptilian Kidney
title_sort postembryonic nephrogenesis and persistence of six2-expressing nephron progenitor cells in the reptilian kidney
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4856328/
https://www.ncbi.nlm.nih.gov/pubmed/27144443
http://dx.doi.org/10.1371/journal.pone.0153422
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