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Activation of Six1 Expression in Vertebrate Sensory Neurons

SIX1 homeodomain protein is one of the essential key regulators of sensory organ development. Six1-deficient mice lack the olfactory epithelium, vomeronasal organs, cochlea, vestibule and vestibuloacoustic ganglion, and also show poor neural differentiation in the distal part of the cranial ganglia....

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Autores principales: Sato, Shigeru, Yajima, Hiroshi, Furuta, Yasuhide, Ikeda, Keiko, Kawakami, Kiyoshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4551851/
https://www.ncbi.nlm.nih.gov/pubmed/26313368
http://dx.doi.org/10.1371/journal.pone.0136666
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author Sato, Shigeru
Yajima, Hiroshi
Furuta, Yasuhide
Ikeda, Keiko
Kawakami, Kiyoshi
author_facet Sato, Shigeru
Yajima, Hiroshi
Furuta, Yasuhide
Ikeda, Keiko
Kawakami, Kiyoshi
author_sort Sato, Shigeru
collection PubMed
description SIX1 homeodomain protein is one of the essential key regulators of sensory organ development. Six1-deficient mice lack the olfactory epithelium, vomeronasal organs, cochlea, vestibule and vestibuloacoustic ganglion, and also show poor neural differentiation in the distal part of the cranial ganglia. Simultaneous loss of both Six1 and Six4 leads to additional abnormalities such as small trigeminal ganglion and abnormal dorsal root ganglia (DRG). The aim of this study was to understand the molecular mechanism that controls Six1 expression in sensory organs, particularly in the trigeminal ganglion and DRG. To this end, we focused on the sensory ganglia-specific Six1 enhancer (Six1-8) conserved between chick and mouse. In vivo reporter assays using both animals identified an important core region comprising binding consensus sequences for several transcription factors including nuclear hormone receptors, TCF/LEF, SMAD, POU homeodomain and basic-helix-loop-helix proteins. The results provided information on upstream factors and signals potentially relevant to Six1 regulation in sensory neurons. We also report the establishment of a new transgenic mouse line (mSix1-8-NLSCre) that expresses Cre recombinase under the control of mouse Six1-8. Cre-mediated recombination was detected specifically in ISL1/2-positive sensory neurons of Six1-positive cranial sensory ganglia and DRG. The unique features of the mSix1-8-NLSCre line are the absence of Cre-mediated recombination in SOX10-positive glial cells and central nervous system and ability to induce recombination in a subset of neurons derived from the olfactory placode/epithelium. This mouse model can be potentially used to advance research on sensory development.
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spelling pubmed-45518512015-09-01 Activation of Six1 Expression in Vertebrate Sensory Neurons Sato, Shigeru Yajima, Hiroshi Furuta, Yasuhide Ikeda, Keiko Kawakami, Kiyoshi PLoS One Research Article SIX1 homeodomain protein is one of the essential key regulators of sensory organ development. Six1-deficient mice lack the olfactory epithelium, vomeronasal organs, cochlea, vestibule and vestibuloacoustic ganglion, and also show poor neural differentiation in the distal part of the cranial ganglia. Simultaneous loss of both Six1 and Six4 leads to additional abnormalities such as small trigeminal ganglion and abnormal dorsal root ganglia (DRG). The aim of this study was to understand the molecular mechanism that controls Six1 expression in sensory organs, particularly in the trigeminal ganglion and DRG. To this end, we focused on the sensory ganglia-specific Six1 enhancer (Six1-8) conserved between chick and mouse. In vivo reporter assays using both animals identified an important core region comprising binding consensus sequences for several transcription factors including nuclear hormone receptors, TCF/LEF, SMAD, POU homeodomain and basic-helix-loop-helix proteins. The results provided information on upstream factors and signals potentially relevant to Six1 regulation in sensory neurons. We also report the establishment of a new transgenic mouse line (mSix1-8-NLSCre) that expresses Cre recombinase under the control of mouse Six1-8. Cre-mediated recombination was detected specifically in ISL1/2-positive sensory neurons of Six1-positive cranial sensory ganglia and DRG. The unique features of the mSix1-8-NLSCre line are the absence of Cre-mediated recombination in SOX10-positive glial cells and central nervous system and ability to induce recombination in a subset of neurons derived from the olfactory placode/epithelium. This mouse model can be potentially used to advance research on sensory development. Public Library of Science 2015-08-27 /pmc/articles/PMC4551851/ /pubmed/26313368 http://dx.doi.org/10.1371/journal.pone.0136666 Text en © 2015 Sato 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
Sato, Shigeru
Yajima, Hiroshi
Furuta, Yasuhide
Ikeda, Keiko
Kawakami, Kiyoshi
Activation of Six1 Expression in Vertebrate Sensory Neurons
title Activation of Six1 Expression in Vertebrate Sensory Neurons
title_full Activation of Six1 Expression in Vertebrate Sensory Neurons
title_fullStr Activation of Six1 Expression in Vertebrate Sensory Neurons
title_full_unstemmed Activation of Six1 Expression in Vertebrate Sensory Neurons
title_short Activation of Six1 Expression in Vertebrate Sensory Neurons
title_sort activation of six1 expression in vertebrate sensory neurons
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4551851/
https://www.ncbi.nlm.nih.gov/pubmed/26313368
http://dx.doi.org/10.1371/journal.pone.0136666
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