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Semaphorin 3A Contributes to Distal Pulmonary Epithelial Cell Differentiation and Lung Morphogenesis

RATIONALE: Semaphorin 3A (Sema3A) is a neural guidance cue that also mediates cell migration, proliferation and apoptosis, and inhibits branching morphogenesis. Because we have shown that genetic deletion of neuropilin-1, which encodes an obligatory Sema3A co-receptor, influences airspace remodeling...

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Autores principales: Becker, Patrice M., Tran, Tracy S., Delannoy, Michael J., He, Chaoxia, Shannon, John M., McGrath-Morrow, Sharon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3214054/
https://www.ncbi.nlm.nih.gov/pubmed/22096573
http://dx.doi.org/10.1371/journal.pone.0027449
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author Becker, Patrice M.
Tran, Tracy S.
Delannoy, Michael J.
He, Chaoxia
Shannon, John M.
McGrath-Morrow, Sharon
author_facet Becker, Patrice M.
Tran, Tracy S.
Delannoy, Michael J.
He, Chaoxia
Shannon, John M.
McGrath-Morrow, Sharon
author_sort Becker, Patrice M.
collection PubMed
description RATIONALE: Semaphorin 3A (Sema3A) is a neural guidance cue that also mediates cell migration, proliferation and apoptosis, and inhibits branching morphogenesis. Because we have shown that genetic deletion of neuropilin-1, which encodes an obligatory Sema3A co-receptor, influences airspace remodeling in the smoke-exposed adult lung, we sought to determine whether genetic deletion of Sema3A altered distal lung structure. METHODS: To determine whether loss of Sema3A signaling influenced distal lung morphology, we compared pulmonary histology, distal epithelial cell morphology and maturation, and the balance between lung cell proliferation and death, in lungs from mice with a targeted genetic deletion of Sema3A (Sema3A(-/-)) and wild-type (Sema3A(+/+)) littermate controls. RESULTS: Genetic deletion of Sema3A resulted in significant perinatal lethality. At E17.5, lungs from Sema3A(-/-) mice had thickened septae and reduced airspace size. Distal lung epithelial cells had increased intracellular glycogen pools and small multivesicular and lamellar bodies with atypical ultrastructure, as well as reduced expression of type I alveolar epithelial cell markers. Alveolarization was markedly attenuated in lungs from the rare Sema3A(-/-) mice that survived the immediate perinatal period. Furthermore, Sema3A deletion was linked with enhanced postnatal alveolar septal cell death. CONCLUSIONS: These data suggest that Sema3A modulates distal pulmonary epithelial cell development and alveolar septation. Defining how Sema3A influences structural plasticity of the developing lung is a critical first step for determining if this pathway can be exploited to develop innovative strategies for repair after acute or chronic lung injury.
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spelling pubmed-32140542011-11-17 Semaphorin 3A Contributes to Distal Pulmonary Epithelial Cell Differentiation and Lung Morphogenesis Becker, Patrice M. Tran, Tracy S. Delannoy, Michael J. He, Chaoxia Shannon, John M. McGrath-Morrow, Sharon PLoS One Research Article RATIONALE: Semaphorin 3A (Sema3A) is a neural guidance cue that also mediates cell migration, proliferation and apoptosis, and inhibits branching morphogenesis. Because we have shown that genetic deletion of neuropilin-1, which encodes an obligatory Sema3A co-receptor, influences airspace remodeling in the smoke-exposed adult lung, we sought to determine whether genetic deletion of Sema3A altered distal lung structure. METHODS: To determine whether loss of Sema3A signaling influenced distal lung morphology, we compared pulmonary histology, distal epithelial cell morphology and maturation, and the balance between lung cell proliferation and death, in lungs from mice with a targeted genetic deletion of Sema3A (Sema3A(-/-)) and wild-type (Sema3A(+/+)) littermate controls. RESULTS: Genetic deletion of Sema3A resulted in significant perinatal lethality. At E17.5, lungs from Sema3A(-/-) mice had thickened septae and reduced airspace size. Distal lung epithelial cells had increased intracellular glycogen pools and small multivesicular and lamellar bodies with atypical ultrastructure, as well as reduced expression of type I alveolar epithelial cell markers. Alveolarization was markedly attenuated in lungs from the rare Sema3A(-/-) mice that survived the immediate perinatal period. Furthermore, Sema3A deletion was linked with enhanced postnatal alveolar septal cell death. CONCLUSIONS: These data suggest that Sema3A modulates distal pulmonary epithelial cell development and alveolar septation. Defining how Sema3A influences structural plasticity of the developing lung is a critical first step for determining if this pathway can be exploited to develop innovative strategies for repair after acute or chronic lung injury. Public Library of Science 2011-11-11 /pmc/articles/PMC3214054/ /pubmed/22096573 http://dx.doi.org/10.1371/journal.pone.0027449 Text en Becker 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
Becker, Patrice M.
Tran, Tracy S.
Delannoy, Michael J.
He, Chaoxia
Shannon, John M.
McGrath-Morrow, Sharon
Semaphorin 3A Contributes to Distal Pulmonary Epithelial Cell Differentiation and Lung Morphogenesis
title Semaphorin 3A Contributes to Distal Pulmonary Epithelial Cell Differentiation and Lung Morphogenesis
title_full Semaphorin 3A Contributes to Distal Pulmonary Epithelial Cell Differentiation and Lung Morphogenesis
title_fullStr Semaphorin 3A Contributes to Distal Pulmonary Epithelial Cell Differentiation and Lung Morphogenesis
title_full_unstemmed Semaphorin 3A Contributes to Distal Pulmonary Epithelial Cell Differentiation and Lung Morphogenesis
title_short Semaphorin 3A Contributes to Distal Pulmonary Epithelial Cell Differentiation and Lung Morphogenesis
title_sort semaphorin 3a contributes to distal pulmonary epithelial cell differentiation and lung morphogenesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3214054/
https://www.ncbi.nlm.nih.gov/pubmed/22096573
http://dx.doi.org/10.1371/journal.pone.0027449
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