Cargando…

Mechanisms of Impaired Lung Development and Ciliation in Mannosidase-1-Alpha-2 (Man1a2) Mutants

BACKGROUND: Ciliary defects cause heterogenous phenotypes related to mutation burden which lead to impaired development. A previously reported homozygous deletion in the Man1a2 gene causes lethal respiratory failure in newborn pups and decreased lung ciliation compared with wild type (WT) pups. The...

Descripción completa

Detalles Bibliográficos
Autores principales: Ningappa, Mylarappa, Adenuga, Morayooluwa, Ngo, Kim A., Mohamed, Nada, Narayanan, Tejaswini, Prasadan, Krishna, Ashokkumar, Chethan, Das, Jishnu, Schmitt, Lori, Hartman, Hannah, Sehrawat, Anuradha, Salgado, Claudia M., Reyes-Mugica, Miguel, Gittes, George K., Lo, Cecilia W., Subramaniam, Shankar, Sindhi, Rakesh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8343402/
https://www.ncbi.nlm.nih.gov/pubmed/34366878
http://dx.doi.org/10.3389/fphys.2021.658518
_version_ 1783734282468982784
author Ningappa, Mylarappa
Adenuga, Morayooluwa
Ngo, Kim A.
Mohamed, Nada
Narayanan, Tejaswini
Prasadan, Krishna
Ashokkumar, Chethan
Das, Jishnu
Schmitt, Lori
Hartman, Hannah
Sehrawat, Anuradha
Salgado, Claudia M.
Reyes-Mugica, Miguel
Gittes, George K.
Lo, Cecilia W.
Subramaniam, Shankar
Sindhi, Rakesh
author_facet Ningappa, Mylarappa
Adenuga, Morayooluwa
Ngo, Kim A.
Mohamed, Nada
Narayanan, Tejaswini
Prasadan, Krishna
Ashokkumar, Chethan
Das, Jishnu
Schmitt, Lori
Hartman, Hannah
Sehrawat, Anuradha
Salgado, Claudia M.
Reyes-Mugica, Miguel
Gittes, George K.
Lo, Cecilia W.
Subramaniam, Shankar
Sindhi, Rakesh
author_sort Ningappa, Mylarappa
collection PubMed
description BACKGROUND: Ciliary defects cause heterogenous phenotypes related to mutation burden which lead to impaired development. A previously reported homozygous deletion in the Man1a2 gene causes lethal respiratory failure in newborn pups and decreased lung ciliation compared with wild type (WT) pups. The effects of heterozygous mutation, and the potential for rescue are not known. PURPOSE: We hypothesized that survival and lung ciliation, (a) would decrease progressively in Man1a2(+/−) heterozygous and Man1a2(–/–) null newborn pups compared with WT, and (b) could be enhanced by gestational treatment with N-Acetyl-cysteine (NAC), an antioxidant. METHODS: Man1a2(+/–) adult mice were fed NAC or placebo from a week before breeding through gestation. Survival of newborn pups was monitored for 24 h. Lungs, liver and tails were harvested for morphology, genotyping, and transcriptional profiling. RESULTS: Survival (p = 0.0001, Kaplan-Meier) and percent lung ciliation (p = 0.0001, ANOVA) measured by frequency of Arl13b(+) respiratory epithelial cells decreased progressively, as hypothesized. Compared with placebo, gestational NAC treatment enhanced (a) lung ciliation in pups with each genotype, (b) survival in heterozygous pups (p = 0.017) but not in WT or null pups. Whole transcriptome of lung but not liver demonstrated patterns of up- and down-regulated genes that were identical in living heterozygous and WT pups, and completely opposite to those in dead heterozygous and null pups. Systems biology analysis enabled reconstruction of protein interaction networks that yielded functionally relevant modules and their interactions. In these networks, the mutant Man1a2 enzyme contributes to abnormal synthesis of proteins essential for lung development. The associated unfolded protein, hypoxic and oxidative stress responses can be mitigated with NAC. Comparisons with the developing human fetal lung transcriptome show that NAC likely restores normal vascular and epithelial tube morphogenesis in Man1a2 mutant mice. CONCLUSION: Survival and lung ciliation in the Man1a2 mutant mouse, and its improvement with N-Acetyl cysteine is genotype-dependent. NAC-mediated rescue depends on the central role for oxidative and hypoxic stress in regulating ciliary function and organogenesis during development.
format Online
Article
Text
id pubmed-8343402
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-83434022021-08-07 Mechanisms of Impaired Lung Development and Ciliation in Mannosidase-1-Alpha-2 (Man1a2) Mutants Ningappa, Mylarappa Adenuga, Morayooluwa Ngo, Kim A. Mohamed, Nada Narayanan, Tejaswini Prasadan, Krishna Ashokkumar, Chethan Das, Jishnu Schmitt, Lori Hartman, Hannah Sehrawat, Anuradha Salgado, Claudia M. Reyes-Mugica, Miguel Gittes, George K. Lo, Cecilia W. Subramaniam, Shankar Sindhi, Rakesh Front Physiol Physiology BACKGROUND: Ciliary defects cause heterogenous phenotypes related to mutation burden which lead to impaired development. A previously reported homozygous deletion in the Man1a2 gene causes lethal respiratory failure in newborn pups and decreased lung ciliation compared with wild type (WT) pups. The effects of heterozygous mutation, and the potential for rescue are not known. PURPOSE: We hypothesized that survival and lung ciliation, (a) would decrease progressively in Man1a2(+/−) heterozygous and Man1a2(–/–) null newborn pups compared with WT, and (b) could be enhanced by gestational treatment with N-Acetyl-cysteine (NAC), an antioxidant. METHODS: Man1a2(+/–) adult mice were fed NAC or placebo from a week before breeding through gestation. Survival of newborn pups was monitored for 24 h. Lungs, liver and tails were harvested for morphology, genotyping, and transcriptional profiling. RESULTS: Survival (p = 0.0001, Kaplan-Meier) and percent lung ciliation (p = 0.0001, ANOVA) measured by frequency of Arl13b(+) respiratory epithelial cells decreased progressively, as hypothesized. Compared with placebo, gestational NAC treatment enhanced (a) lung ciliation in pups with each genotype, (b) survival in heterozygous pups (p = 0.017) but not in WT or null pups. Whole transcriptome of lung but not liver demonstrated patterns of up- and down-regulated genes that were identical in living heterozygous and WT pups, and completely opposite to those in dead heterozygous and null pups. Systems biology analysis enabled reconstruction of protein interaction networks that yielded functionally relevant modules and their interactions. In these networks, the mutant Man1a2 enzyme contributes to abnormal synthesis of proteins essential for lung development. The associated unfolded protein, hypoxic and oxidative stress responses can be mitigated with NAC. Comparisons with the developing human fetal lung transcriptome show that NAC likely restores normal vascular and epithelial tube morphogenesis in Man1a2 mutant mice. CONCLUSION: Survival and lung ciliation in the Man1a2 mutant mouse, and its improvement with N-Acetyl cysteine is genotype-dependent. NAC-mediated rescue depends on the central role for oxidative and hypoxic stress in regulating ciliary function and organogenesis during development. Frontiers Media S.A. 2021-07-14 /pmc/articles/PMC8343402/ /pubmed/34366878 http://dx.doi.org/10.3389/fphys.2021.658518 Text en Copyright © 2021 Ningappa, Adenuga, Ngo, Mohamed, Narayanan, Prasadan, Ashokkumar, Das, Schmitt, Hartman, Sehrawat, Salgado, Reyes-Mugica, Gittes, Lo, Subramaniam and Sindhi. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Physiology
Ningappa, Mylarappa
Adenuga, Morayooluwa
Ngo, Kim A.
Mohamed, Nada
Narayanan, Tejaswini
Prasadan, Krishna
Ashokkumar, Chethan
Das, Jishnu
Schmitt, Lori
Hartman, Hannah
Sehrawat, Anuradha
Salgado, Claudia M.
Reyes-Mugica, Miguel
Gittes, George K.
Lo, Cecilia W.
Subramaniam, Shankar
Sindhi, Rakesh
Mechanisms of Impaired Lung Development and Ciliation in Mannosidase-1-Alpha-2 (Man1a2) Mutants
title Mechanisms of Impaired Lung Development and Ciliation in Mannosidase-1-Alpha-2 (Man1a2) Mutants
title_full Mechanisms of Impaired Lung Development and Ciliation in Mannosidase-1-Alpha-2 (Man1a2) Mutants
title_fullStr Mechanisms of Impaired Lung Development and Ciliation in Mannosidase-1-Alpha-2 (Man1a2) Mutants
title_full_unstemmed Mechanisms of Impaired Lung Development and Ciliation in Mannosidase-1-Alpha-2 (Man1a2) Mutants
title_short Mechanisms of Impaired Lung Development and Ciliation in Mannosidase-1-Alpha-2 (Man1a2) Mutants
title_sort mechanisms of impaired lung development and ciliation in mannosidase-1-alpha-2 (man1a2) mutants
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8343402/
https://www.ncbi.nlm.nih.gov/pubmed/34366878
http://dx.doi.org/10.3389/fphys.2021.658518
work_keys_str_mv AT ningappamylarappa mechanismsofimpairedlungdevelopmentandciliationinmannosidase1alpha2man1a2mutants
AT adenugamorayooluwa mechanismsofimpairedlungdevelopmentandciliationinmannosidase1alpha2man1a2mutants
AT ngokima mechanismsofimpairedlungdevelopmentandciliationinmannosidase1alpha2man1a2mutants
AT mohamednada mechanismsofimpairedlungdevelopmentandciliationinmannosidase1alpha2man1a2mutants
AT narayanantejaswini mechanismsofimpairedlungdevelopmentandciliationinmannosidase1alpha2man1a2mutants
AT prasadankrishna mechanismsofimpairedlungdevelopmentandciliationinmannosidase1alpha2man1a2mutants
AT ashokkumarchethan mechanismsofimpairedlungdevelopmentandciliationinmannosidase1alpha2man1a2mutants
AT dasjishnu mechanismsofimpairedlungdevelopmentandciliationinmannosidase1alpha2man1a2mutants
AT schmittlori mechanismsofimpairedlungdevelopmentandciliationinmannosidase1alpha2man1a2mutants
AT hartmanhannah mechanismsofimpairedlungdevelopmentandciliationinmannosidase1alpha2man1a2mutants
AT sehrawatanuradha mechanismsofimpairedlungdevelopmentandciliationinmannosidase1alpha2man1a2mutants
AT salgadoclaudiam mechanismsofimpairedlungdevelopmentandciliationinmannosidase1alpha2man1a2mutants
AT reyesmugicamiguel mechanismsofimpairedlungdevelopmentandciliationinmannosidase1alpha2man1a2mutants
AT gittesgeorgek mechanismsofimpairedlungdevelopmentandciliationinmannosidase1alpha2man1a2mutants
AT loceciliaw mechanismsofimpairedlungdevelopmentandciliationinmannosidase1alpha2man1a2mutants
AT subramaniamshankar mechanismsofimpairedlungdevelopmentandciliationinmannosidase1alpha2man1a2mutants
AT sindhirakesh mechanismsofimpairedlungdevelopmentandciliationinmannosidase1alpha2man1a2mutants