Generation and Standardized, Systemic Phenotypic Analysis of Pou3f3L423P Mutant Mice.
Increased levels of blood plasma urea were used as phenotypic parameter for establishing novel mouse models for kidney diseases on the genetic background of C3H inbred mice in the phenotype-driven Munich ENU mouse mutagenesis project. The phenotypically recessive mutant line HST011 was established a...
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doaj-4192d453474a428592d8f47b34c1e8b82020-11-24T21:26:33ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-01113e015047210.1371/journal.pone.0150472Generation and Standardized, Systemic Phenotypic Analysis of Pou3f3L423P Mutant Mice.Sudhir KumarBirgit RathkolbElisabeth KemterSibylle SabrautzkiDian MichelThure AdlerLore BeckerJohannes BeckersDirk H BuschLillian GarrettWolfgang HansSabine M HölterMarion HorschMartin KlingensporThomas KlopstockIldikó RáczJan RozmanIngrid Liliana Vargas PanessoAlexandra VernalekenAndreas ZimmerHelmut FuchsValérie Gailus-DurnerMartin Hrabě de AngelisEckhard WolfBernhard AignerIncreased levels of blood plasma urea were used as phenotypic parameter for establishing novel mouse models for kidney diseases on the genetic background of C3H inbred mice in the phenotype-driven Munich ENU mouse mutagenesis project. The phenotypically recessive mutant line HST011 was established and further analyzed. The causative mutation was detected in the POU domain, class 3 transcription factor 3 (Pou3f3) gene, which leads to the amino acid exchange Pou3f3L423P thereby affecting the conserved homeobox domain of the protein. Pou3f3 homozygous knockout mice are published and show perinatal death. Line Pou3f3L423P is a viable mouse model harboring a homozygous Pou3f3 mutation. Standardized, systemic phenotypic analysis of homozygous mutants was carried out in the German Mouse Clinic. Main phenotypic changes were low body weight and a state of low energy stores, kidney dysfunction and secondary effects thereof including low bone mineralization, multiple behavioral and neurological defects including locomotor, vestibular, auditory and nociceptive impairments, as well as multiple subtle changes in immunological parameters. Genome-wide transcriptome profiling analysis of kidney and brain of Pou3f3L423P homozygous mutants identified significantly regulated genes as compared to wild-type controls.http://europepmc.org/articles/PMC4803225?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sudhir Kumar Birgit Rathkolb Elisabeth Kemter Sibylle Sabrautzki Dian Michel Thure Adler Lore Becker Johannes Beckers Dirk H Busch Lillian Garrett Wolfgang Hans Sabine M Hölter Marion Horsch Martin Klingenspor Thomas Klopstock Ildikó Rácz Jan Rozman Ingrid Liliana Vargas Panesso Alexandra Vernaleken Andreas Zimmer Helmut Fuchs Valérie Gailus-Durner Martin Hrabě de Angelis Eckhard Wolf Bernhard Aigner |
spellingShingle |
Sudhir Kumar Birgit Rathkolb Elisabeth Kemter Sibylle Sabrautzki Dian Michel Thure Adler Lore Becker Johannes Beckers Dirk H Busch Lillian Garrett Wolfgang Hans Sabine M Hölter Marion Horsch Martin Klingenspor Thomas Klopstock Ildikó Rácz Jan Rozman Ingrid Liliana Vargas Panesso Alexandra Vernaleken Andreas Zimmer Helmut Fuchs Valérie Gailus-Durner Martin Hrabě de Angelis Eckhard Wolf Bernhard Aigner Generation and Standardized, Systemic Phenotypic Analysis of Pou3f3L423P Mutant Mice. PLoS ONE |
author_facet |
Sudhir Kumar Birgit Rathkolb Elisabeth Kemter Sibylle Sabrautzki Dian Michel Thure Adler Lore Becker Johannes Beckers Dirk H Busch Lillian Garrett Wolfgang Hans Sabine M Hölter Marion Horsch Martin Klingenspor Thomas Klopstock Ildikó Rácz Jan Rozman Ingrid Liliana Vargas Panesso Alexandra Vernaleken Andreas Zimmer Helmut Fuchs Valérie Gailus-Durner Martin Hrabě de Angelis Eckhard Wolf Bernhard Aigner |
author_sort |
Sudhir Kumar |
title |
Generation and Standardized, Systemic Phenotypic Analysis of Pou3f3L423P Mutant Mice. |
title_short |
Generation and Standardized, Systemic Phenotypic Analysis of Pou3f3L423P Mutant Mice. |
title_full |
Generation and Standardized, Systemic Phenotypic Analysis of Pou3f3L423P Mutant Mice. |
title_fullStr |
Generation and Standardized, Systemic Phenotypic Analysis of Pou3f3L423P Mutant Mice. |
title_full_unstemmed |
Generation and Standardized, Systemic Phenotypic Analysis of Pou3f3L423P Mutant Mice. |
title_sort |
generation and standardized, systemic phenotypic analysis of pou3f3l423p mutant mice. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2016-01-01 |
description |
Increased levels of blood plasma urea were used as phenotypic parameter for establishing novel mouse models for kidney diseases on the genetic background of C3H inbred mice in the phenotype-driven Munich ENU mouse mutagenesis project. The phenotypically recessive mutant line HST011 was established and further analyzed. The causative mutation was detected in the POU domain, class 3 transcription factor 3 (Pou3f3) gene, which leads to the amino acid exchange Pou3f3L423P thereby affecting the conserved homeobox domain of the protein. Pou3f3 homozygous knockout mice are published and show perinatal death. Line Pou3f3L423P is a viable mouse model harboring a homozygous Pou3f3 mutation. Standardized, systemic phenotypic analysis of homozygous mutants was carried out in the German Mouse Clinic. Main phenotypic changes were low body weight and a state of low energy stores, kidney dysfunction and secondary effects thereof including low bone mineralization, multiple behavioral and neurological defects including locomotor, vestibular, auditory and nociceptive impairments, as well as multiple subtle changes in immunological parameters. Genome-wide transcriptome profiling analysis of kidney and brain of Pou3f3L423P homozygous mutants identified significantly regulated genes as compared to wild-type controls. |
url |
http://europepmc.org/articles/PMC4803225?pdf=render |
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