Cargando…
An ensemble of regulatory elements controls Runx3 spatiotemporal expression in subsets of dorsal root ganglia proprioceptive neurons
The Runx3 transcription factor is essential for development and diversification of the dorsal root ganglia (DRGs) TrkC sensory neurons. In Runx3-deficient mice, developing TrkC neurons fail to extend central and peripheral afferents, leading to cell death and disruption of the stretch reflex circuit...
Autores principales: | , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Cold Spring Harbor Laboratory Press
2016
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5204353/ https://www.ncbi.nlm.nih.gov/pubmed/28007784 http://dx.doi.org/10.1101/gad.291484.116 |
_version_ | 1782489884252962816 |
---|---|
author | Appel, Elena Weissmann, Sarit Salzberg, Yehuda Orlovsky, Kira Negreanu, Varda Tsoory, Michael Raanan, Calanit Feldmesser, Ester Bernstein, Yael Wolstein, Orit Levanon, Ditsa Groner, Yoram |
author_facet | Appel, Elena Weissmann, Sarit Salzberg, Yehuda Orlovsky, Kira Negreanu, Varda Tsoory, Michael Raanan, Calanit Feldmesser, Ester Bernstein, Yael Wolstein, Orit Levanon, Ditsa Groner, Yoram |
author_sort | Appel, Elena |
collection | PubMed |
description | The Runx3 transcription factor is essential for development and diversification of the dorsal root ganglia (DRGs) TrkC sensory neurons. In Runx3-deficient mice, developing TrkC neurons fail to extend central and peripheral afferents, leading to cell death and disruption of the stretch reflex circuit, resulting in severe limb ataxia. Despite its central role, the mechanisms underlying the spatiotemporal expression specificities of Runx3 in TrkC neurons were largely unknown. Here we first defined the genomic transcription unit encompassing regulatory elements (REs) that mediate the tissue-specific expression of Runx3. Using transgenic mice expressing BAC reporters spanning the Runx3 locus, we discovered three REs—dubbed R1, R2, and R3—that cross-talk with promoter-2 (P2) to drive TrkC neuron-specific Runx3 transcription. Deletion of single or multiple elements either in the BAC transgenics or by CRISPR/Cas9-mediated endogenous ablation established the REs’ ability to promote and/or repress Runx3 expression in developing sensory neurons. Our analysis reveals that an intricate combinatorial interplay among the three REs governs Runx3 expression in distinct subtypes of TrkC neurons while concomitantly extinguishing its expression in non-TrkC neurons. These findings provide insights into the mechanism regulating cell type-specific expression and subtype diversification of TrkC neurons in developing DRGs. |
format | Online Article Text |
id | pubmed-5204353 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | Cold Spring Harbor Laboratory Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-52043532017-01-17 An ensemble of regulatory elements controls Runx3 spatiotemporal expression in subsets of dorsal root ganglia proprioceptive neurons Appel, Elena Weissmann, Sarit Salzberg, Yehuda Orlovsky, Kira Negreanu, Varda Tsoory, Michael Raanan, Calanit Feldmesser, Ester Bernstein, Yael Wolstein, Orit Levanon, Ditsa Groner, Yoram Genes Dev Research Paper The Runx3 transcription factor is essential for development and diversification of the dorsal root ganglia (DRGs) TrkC sensory neurons. In Runx3-deficient mice, developing TrkC neurons fail to extend central and peripheral afferents, leading to cell death and disruption of the stretch reflex circuit, resulting in severe limb ataxia. Despite its central role, the mechanisms underlying the spatiotemporal expression specificities of Runx3 in TrkC neurons were largely unknown. Here we first defined the genomic transcription unit encompassing regulatory elements (REs) that mediate the tissue-specific expression of Runx3. Using transgenic mice expressing BAC reporters spanning the Runx3 locus, we discovered three REs—dubbed R1, R2, and R3—that cross-talk with promoter-2 (P2) to drive TrkC neuron-specific Runx3 transcription. Deletion of single or multiple elements either in the BAC transgenics or by CRISPR/Cas9-mediated endogenous ablation established the REs’ ability to promote and/or repress Runx3 expression in developing sensory neurons. Our analysis reveals that an intricate combinatorial interplay among the three REs governs Runx3 expression in distinct subtypes of TrkC neurons while concomitantly extinguishing its expression in non-TrkC neurons. These findings provide insights into the mechanism regulating cell type-specific expression and subtype diversification of TrkC neurons in developing DRGs. Cold Spring Harbor Laboratory Press 2016-12-01 /pmc/articles/PMC5204353/ /pubmed/28007784 http://dx.doi.org/10.1101/gad.291484.116 Text en © 2016 Appel et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article, published in Genes & Development, is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/. |
spellingShingle | Research Paper Appel, Elena Weissmann, Sarit Salzberg, Yehuda Orlovsky, Kira Negreanu, Varda Tsoory, Michael Raanan, Calanit Feldmesser, Ester Bernstein, Yael Wolstein, Orit Levanon, Ditsa Groner, Yoram An ensemble of regulatory elements controls Runx3 spatiotemporal expression in subsets of dorsal root ganglia proprioceptive neurons |
title | An ensemble of regulatory elements controls Runx3 spatiotemporal expression in subsets of dorsal root ganglia proprioceptive neurons |
title_full | An ensemble of regulatory elements controls Runx3 spatiotemporal expression in subsets of dorsal root ganglia proprioceptive neurons |
title_fullStr | An ensemble of regulatory elements controls Runx3 spatiotemporal expression in subsets of dorsal root ganglia proprioceptive neurons |
title_full_unstemmed | An ensemble of regulatory elements controls Runx3 spatiotemporal expression in subsets of dorsal root ganglia proprioceptive neurons |
title_short | An ensemble of regulatory elements controls Runx3 spatiotemporal expression in subsets of dorsal root ganglia proprioceptive neurons |
title_sort | ensemble of regulatory elements controls runx3 spatiotemporal expression in subsets of dorsal root ganglia proprioceptive neurons |
topic | Research Paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5204353/ https://www.ncbi.nlm.nih.gov/pubmed/28007784 http://dx.doi.org/10.1101/gad.291484.116 |
work_keys_str_mv | AT appelelena anensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT weissmannsarit anensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT salzbergyehuda anensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT orlovskykira anensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT negreanuvarda anensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT tsoorymichael anensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT raanancalanit anensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT feldmesserester anensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT bernsteinyael anensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT wolsteinorit anensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT levanonditsa anensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT groneryoram anensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT appelelena ensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT weissmannsarit ensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT salzbergyehuda ensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT orlovskykira ensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT negreanuvarda ensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT tsoorymichael ensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT raanancalanit ensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT feldmesserester ensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT bernsteinyael ensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT wolsteinorit ensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT levanonditsa ensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons AT groneryoram ensembleofregulatoryelementscontrolsrunx3spatiotemporalexpressioninsubsetsofdorsalrootgangliaproprioceptiveneurons |