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scRNA-Seq Reveals New Enteric Nervous System Roles for GDNF, NRTN, and TBX3

BACKGROUND AND AIMS: Bowel function requires coordinated activity of diverse enteric neuron subtypes. Our aim was to define gene expression in these neuron subtypes to facilitate development of novel therapeutic approaches to treat devastating enteric neuropathies, and to learn more about enteric ne...

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Autores principales: Wright, Christina M., Schneider, Sabine, Smith-Edwards, Kristen M., Mafra, Fernanda, Leembruggen, Anita J.L., Gonzalez, Michael V., Kothakapa, Deepika R., Anderson, Jessica B., Maguire, Beth A., Gao, Tao, Missall, Tricia A., Howard, Marthe J., Bornstein, Joel C., Davis, Brian M., Heuckeroth, Robert O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8099699/
https://www.ncbi.nlm.nih.gov/pubmed/33444816
http://dx.doi.org/10.1016/j.jcmgh.2020.12.014
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author Wright, Christina M.
Schneider, Sabine
Smith-Edwards, Kristen M.
Mafra, Fernanda
Leembruggen, Anita J.L.
Gonzalez, Michael V.
Kothakapa, Deepika R.
Anderson, Jessica B.
Maguire, Beth A.
Gao, Tao
Missall, Tricia A.
Howard, Marthe J.
Bornstein, Joel C.
Davis, Brian M.
Heuckeroth, Robert O.
author_facet Wright, Christina M.
Schneider, Sabine
Smith-Edwards, Kristen M.
Mafra, Fernanda
Leembruggen, Anita J.L.
Gonzalez, Michael V.
Kothakapa, Deepika R.
Anderson, Jessica B.
Maguire, Beth A.
Gao, Tao
Missall, Tricia A.
Howard, Marthe J.
Bornstein, Joel C.
Davis, Brian M.
Heuckeroth, Robert O.
author_sort Wright, Christina M.
collection PubMed
description BACKGROUND AND AIMS: Bowel function requires coordinated activity of diverse enteric neuron subtypes. Our aim was to define gene expression in these neuron subtypes to facilitate development of novel therapeutic approaches to treat devastating enteric neuropathies, and to learn more about enteric nervous system function. METHODS: To identify subtype–specific genes, we performed single-nucleus RNA-seq on adult mouse and human colon myenteric plexus, and single-cell RNA-seq on E17.5 mouse ENS cells from whole bowel. We used immunohistochemistry, select mutant mice, and calcium imaging to validate and extend results. RESULTS: RNA-seq on 635 adult mouse colon myenteric neurons and 707 E17.5 neurons from whole bowel defined seven adult neuron subtypes, eight E17.5 neuron subtypes and hundreds of differentially expressed genes. Manually dissected human colon myenteric plexus yielded RNA-seq data from 48 neurons, 3798 glia, 5568 smooth muscle, 377 interstitial cells of Cajal, and 2153 macrophages. Immunohistochemistry demonstrated differential expression for BNC2, PBX3, SATB1, RBFOX1, TBX2, and TBX3 in enteric neuron subtypes. Conditional Tbx3 loss reduced NOS1-expressing myenteric neurons. Differential Gfra1 and Gfra2 expression coupled with calcium imaging revealed that GDNF and neurturin acutely and differentially regulate activity of ∼50% of myenteric neurons with distinct effects on smooth muscle contractions. CONCLUSION: Single cell analyses defined genes differentially expressed in myenteric neuron subtypes and new roles for TBX3, GDNF and NRTN. These data facilitate molecular diagnostic studies and novel therapeutics for bowel motility disorders.
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spelling pubmed-80996992021-05-13 scRNA-Seq Reveals New Enteric Nervous System Roles for GDNF, NRTN, and TBX3 Wright, Christina M. Schneider, Sabine Smith-Edwards, Kristen M. Mafra, Fernanda Leembruggen, Anita J.L. Gonzalez, Michael V. Kothakapa, Deepika R. Anderson, Jessica B. Maguire, Beth A. Gao, Tao Missall, Tricia A. Howard, Marthe J. Bornstein, Joel C. Davis, Brian M. Heuckeroth, Robert O. Cell Mol Gastroenterol Hepatol Original Research BACKGROUND AND AIMS: Bowel function requires coordinated activity of diverse enteric neuron subtypes. Our aim was to define gene expression in these neuron subtypes to facilitate development of novel therapeutic approaches to treat devastating enteric neuropathies, and to learn more about enteric nervous system function. METHODS: To identify subtype–specific genes, we performed single-nucleus RNA-seq on adult mouse and human colon myenteric plexus, and single-cell RNA-seq on E17.5 mouse ENS cells from whole bowel. We used immunohistochemistry, select mutant mice, and calcium imaging to validate and extend results. RESULTS: RNA-seq on 635 adult mouse colon myenteric neurons and 707 E17.5 neurons from whole bowel defined seven adult neuron subtypes, eight E17.5 neuron subtypes and hundreds of differentially expressed genes. Manually dissected human colon myenteric plexus yielded RNA-seq data from 48 neurons, 3798 glia, 5568 smooth muscle, 377 interstitial cells of Cajal, and 2153 macrophages. Immunohistochemistry demonstrated differential expression for BNC2, PBX3, SATB1, RBFOX1, TBX2, and TBX3 in enteric neuron subtypes. Conditional Tbx3 loss reduced NOS1-expressing myenteric neurons. Differential Gfra1 and Gfra2 expression coupled with calcium imaging revealed that GDNF and neurturin acutely and differentially regulate activity of ∼50% of myenteric neurons with distinct effects on smooth muscle contractions. CONCLUSION: Single cell analyses defined genes differentially expressed in myenteric neuron subtypes and new roles for TBX3, GDNF and NRTN. These data facilitate molecular diagnostic studies and novel therapeutics for bowel motility disorders. Elsevier 2021-01-11 /pmc/articles/PMC8099699/ /pubmed/33444816 http://dx.doi.org/10.1016/j.jcmgh.2020.12.014 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Research
Wright, Christina M.
Schneider, Sabine
Smith-Edwards, Kristen M.
Mafra, Fernanda
Leembruggen, Anita J.L.
Gonzalez, Michael V.
Kothakapa, Deepika R.
Anderson, Jessica B.
Maguire, Beth A.
Gao, Tao
Missall, Tricia A.
Howard, Marthe J.
Bornstein, Joel C.
Davis, Brian M.
Heuckeroth, Robert O.
scRNA-Seq Reveals New Enteric Nervous System Roles for GDNF, NRTN, and TBX3
title scRNA-Seq Reveals New Enteric Nervous System Roles for GDNF, NRTN, and TBX3
title_full scRNA-Seq Reveals New Enteric Nervous System Roles for GDNF, NRTN, and TBX3
title_fullStr scRNA-Seq Reveals New Enteric Nervous System Roles for GDNF, NRTN, and TBX3
title_full_unstemmed scRNA-Seq Reveals New Enteric Nervous System Roles for GDNF, NRTN, and TBX3
title_short scRNA-Seq Reveals New Enteric Nervous System Roles for GDNF, NRTN, and TBX3
title_sort scrna-seq reveals new enteric nervous system roles for gdnf, nrtn, and tbx3
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8099699/
https://www.ncbi.nlm.nih.gov/pubmed/33444816
http://dx.doi.org/10.1016/j.jcmgh.2020.12.014
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