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Polycystic Kidney Disease in the Medaka (Oryzias latipes) pc Mutant Caused by a Mutation in the Gli-Similar3 (glis3) Gene

Polycystic kidney disease (PKD) is a common hereditary disease in humans. Recent studies have shown an increasing number of ciliary genes that are involved in the pathogenesis of PKD. In this study, the Gli-similar3 (glis3) gene was identified as the causal gene of the medaka pc mutant, a model of P...

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Autores principales: Hashimoto, Hisashi, Miyamoto, Rieko, Watanabe, Naoki, Shiba, Dai, Ozato, Kenjiro, Inoue, Chikako, Kubo, Yuko, Koga, Akihiko, Jindo, Tomoko, Narita, Takanori, Naruse, Kiyoshi, Ohishi, Kazuko, Nogata, Keiko, Shin-I, Tadasu, Asakawa, Shuichi, Shimizu, Nobuyoshi, Miyamoto, Tomotsune, Mochizuki, Toshio, Yokoyama, Takahiko, Hori, Hiroshi, Takeda, Hiroyuki, Kohara, Yuji, Wakamatsu, Yuko
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2706989/
https://www.ncbi.nlm.nih.gov/pubmed/19609364
http://dx.doi.org/10.1371/journal.pone.0006299
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author Hashimoto, Hisashi
Miyamoto, Rieko
Watanabe, Naoki
Shiba, Dai
Ozato, Kenjiro
Inoue, Chikako
Kubo, Yuko
Koga, Akihiko
Jindo, Tomoko
Narita, Takanori
Naruse, Kiyoshi
Ohishi, Kazuko
Nogata, Keiko
Shin-I, Tadasu
Asakawa, Shuichi
Shimizu, Nobuyoshi
Miyamoto, Tomotsune
Mochizuki, Toshio
Yokoyama, Takahiko
Hori, Hiroshi
Takeda, Hiroyuki
Kohara, Yuji
Wakamatsu, Yuko
author_facet Hashimoto, Hisashi
Miyamoto, Rieko
Watanabe, Naoki
Shiba, Dai
Ozato, Kenjiro
Inoue, Chikako
Kubo, Yuko
Koga, Akihiko
Jindo, Tomoko
Narita, Takanori
Naruse, Kiyoshi
Ohishi, Kazuko
Nogata, Keiko
Shin-I, Tadasu
Asakawa, Shuichi
Shimizu, Nobuyoshi
Miyamoto, Tomotsune
Mochizuki, Toshio
Yokoyama, Takahiko
Hori, Hiroshi
Takeda, Hiroyuki
Kohara, Yuji
Wakamatsu, Yuko
author_sort Hashimoto, Hisashi
collection PubMed
description Polycystic kidney disease (PKD) is a common hereditary disease in humans. Recent studies have shown an increasing number of ciliary genes that are involved in the pathogenesis of PKD. In this study, the Gli-similar3 (glis3) gene was identified as the causal gene of the medaka pc mutant, a model of PKD. In the pc mutant, a transposon was found to be inserted into the fourth intron of the pc/glis3 gene, causing aberrant splicing of the pc/glis3 mRNA and thus a putatively truncated protein with a defective zinc finger domain. pc/glis3 mRNA is expressed in the epithelial cells of the renal tubules and ducts of the pronephros and mesonephros, and also in the pancreas. Antisense oligonucleotide-mediated knockdown of pc/glis3 resulted in cyst formation in the pronephric tubules of medaka fry. Although three other glis family members, glis1a, glis1b and glis2, were found in the medaka genome, none were expressed in the embryonic or larval kidney. In the pc mutant, the urine flow rate in the pronephros was significantly reduced, which was considered to be a direct cause of renal cyst formation. The cilia on the surface of the renal tubular epithelium were significantly shorter in the pc mutant than in wild-type, suggesting that shortened cilia resulted in a decrease in driving force and, in turn, a reduction in urine flow rate. Most importantly, EGFP-tagged pc/glis3 protein localized in primary cilia as well as in the nucleus when expressed in mouse renal epithelial cells, indicating a strong connection between pc/glis3 and ciliary function. Unlike human patients with GLIS3 mutations, the medaka pc mutant shows none of the symptoms of a pancreatic phenotype, such as impaired insulin expression and/or diabetes, suggesting that the pc mutant may be suitable for use as a kidney-specific model for human GLIS3 patients.
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spelling pubmed-27069892009-07-17 Polycystic Kidney Disease in the Medaka (Oryzias latipes) pc Mutant Caused by a Mutation in the Gli-Similar3 (glis3) Gene Hashimoto, Hisashi Miyamoto, Rieko Watanabe, Naoki Shiba, Dai Ozato, Kenjiro Inoue, Chikako Kubo, Yuko Koga, Akihiko Jindo, Tomoko Narita, Takanori Naruse, Kiyoshi Ohishi, Kazuko Nogata, Keiko Shin-I, Tadasu Asakawa, Shuichi Shimizu, Nobuyoshi Miyamoto, Tomotsune Mochizuki, Toshio Yokoyama, Takahiko Hori, Hiroshi Takeda, Hiroyuki Kohara, Yuji Wakamatsu, Yuko PLoS One Research Article Polycystic kidney disease (PKD) is a common hereditary disease in humans. Recent studies have shown an increasing number of ciliary genes that are involved in the pathogenesis of PKD. In this study, the Gli-similar3 (glis3) gene was identified as the causal gene of the medaka pc mutant, a model of PKD. In the pc mutant, a transposon was found to be inserted into the fourth intron of the pc/glis3 gene, causing aberrant splicing of the pc/glis3 mRNA and thus a putatively truncated protein with a defective zinc finger domain. pc/glis3 mRNA is expressed in the epithelial cells of the renal tubules and ducts of the pronephros and mesonephros, and also in the pancreas. Antisense oligonucleotide-mediated knockdown of pc/glis3 resulted in cyst formation in the pronephric tubules of medaka fry. Although three other glis family members, glis1a, glis1b and glis2, were found in the medaka genome, none were expressed in the embryonic or larval kidney. In the pc mutant, the urine flow rate in the pronephros was significantly reduced, which was considered to be a direct cause of renal cyst formation. The cilia on the surface of the renal tubular epithelium were significantly shorter in the pc mutant than in wild-type, suggesting that shortened cilia resulted in a decrease in driving force and, in turn, a reduction in urine flow rate. Most importantly, EGFP-tagged pc/glis3 protein localized in primary cilia as well as in the nucleus when expressed in mouse renal epithelial cells, indicating a strong connection between pc/glis3 and ciliary function. Unlike human patients with GLIS3 mutations, the medaka pc mutant shows none of the symptoms of a pancreatic phenotype, such as impaired insulin expression and/or diabetes, suggesting that the pc mutant may be suitable for use as a kidney-specific model for human GLIS3 patients. Public Library of Science 2009-07-17 /pmc/articles/PMC2706989/ /pubmed/19609364 http://dx.doi.org/10.1371/journal.pone.0006299 Text en Hashimoto 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Hashimoto, Hisashi
Miyamoto, Rieko
Watanabe, Naoki
Shiba, Dai
Ozato, Kenjiro
Inoue, Chikako
Kubo, Yuko
Koga, Akihiko
Jindo, Tomoko
Narita, Takanori
Naruse, Kiyoshi
Ohishi, Kazuko
Nogata, Keiko
Shin-I, Tadasu
Asakawa, Shuichi
Shimizu, Nobuyoshi
Miyamoto, Tomotsune
Mochizuki, Toshio
Yokoyama, Takahiko
Hori, Hiroshi
Takeda, Hiroyuki
Kohara, Yuji
Wakamatsu, Yuko
Polycystic Kidney Disease in the Medaka (Oryzias latipes) pc Mutant Caused by a Mutation in the Gli-Similar3 (glis3) Gene
title Polycystic Kidney Disease in the Medaka (Oryzias latipes) pc Mutant Caused by a Mutation in the Gli-Similar3 (glis3) Gene
title_full Polycystic Kidney Disease in the Medaka (Oryzias latipes) pc Mutant Caused by a Mutation in the Gli-Similar3 (glis3) Gene
title_fullStr Polycystic Kidney Disease in the Medaka (Oryzias latipes) pc Mutant Caused by a Mutation in the Gli-Similar3 (glis3) Gene
title_full_unstemmed Polycystic Kidney Disease in the Medaka (Oryzias latipes) pc Mutant Caused by a Mutation in the Gli-Similar3 (glis3) Gene
title_short Polycystic Kidney Disease in the Medaka (Oryzias latipes) pc Mutant Caused by a Mutation in the Gli-Similar3 (glis3) Gene
title_sort polycystic kidney disease in the medaka (oryzias latipes) pc mutant caused by a mutation in the gli-similar3 (glis3) gene
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2706989/
https://www.ncbi.nlm.nih.gov/pubmed/19609364
http://dx.doi.org/10.1371/journal.pone.0006299
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