Alterations in gene expression in T1α null lung: a model of deficient alveolar sac development

<p>Abstract</p> <p>Background</p> <p>Development of lung alveolar sacs of normal structure and size at late gestation is necessary for the gas exchange process that sustains respiration at birth. Mice lacking the lung differentiation gene T1α [T1α(-/-)] fail to form exp...

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Main Authors: Hinds Anne, Spira Avrum, Millien Guetchyn, Wang Junling, Williams Mary C, Ramirez Maria I
Format: Article
Language:English
Published: BMC 2006-07-01
Series:BMC Developmental Biology
Online Access:http://www.biomedcentral.com/1471-213X/6/35
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spelling doaj-cc685f367d114efa9b2e3e5176004d942020-11-24T21:14:33ZengBMCBMC Developmental Biology1471-213X2006-07-01613510.1186/1471-213X-6-35Alterations in gene expression in T1α null lung: a model of deficient alveolar sac developmentHinds AnneSpira AvrumMillien GuetchynWang JunlingWilliams Mary CRamirez Maria I<p>Abstract</p> <p>Background</p> <p>Development of lung alveolar sacs of normal structure and size at late gestation is necessary for the gas exchange process that sustains respiration at birth. Mice lacking the lung differentiation gene T1α [T1α(-/-)] fail to form expanded alveolar sacs, resulting in respiratory failure at birth. Since little is known about the molecular pathways driving alveolar sacculation, we used expression microarrays to identify genes altered in the abnormal lungs and, by inference, may play roles in normal lung morphogenesis.</p> <p>Results</p> <p>Altered expression of genes related to cell-cell interaction, such as ephrinA3, are observed in T1α(-/-) at E18.5. At term, FosB, Egr1, MPK-1 and Nur77, which can function as negative regulators of the cell-cycle, are down-regulated. This is consistent with the hyperproliferation of peripheral lung cells in term T1α (-/-) lungs reported earlier. Biochemical assays show that neither PCNA nor p21 are altered at E18.5. At term in contrast, PCNA is increased, and p21 is decreased.</p> <p>Conclusion</p> <p>This global analysis has identified a number of candidate genes that are significantly altered in lungs in which sacculation is abnormal. Many genes identified were not previously associated with lung development and may participate in formation of alveolar sacs prenatally.</p> http://www.biomedcentral.com/1471-213X/6/35
collection DOAJ
language English
format Article
sources DOAJ
author Hinds Anne
Spira Avrum
Millien Guetchyn
Wang Junling
Williams Mary C
Ramirez Maria I
spellingShingle Hinds Anne
Spira Avrum
Millien Guetchyn
Wang Junling
Williams Mary C
Ramirez Maria I
Alterations in gene expression in T1α null lung: a model of deficient alveolar sac development
BMC Developmental Biology
author_facet Hinds Anne
Spira Avrum
Millien Guetchyn
Wang Junling
Williams Mary C
Ramirez Maria I
author_sort Hinds Anne
title Alterations in gene expression in T1α null lung: a model of deficient alveolar sac development
title_short Alterations in gene expression in T1α null lung: a model of deficient alveolar sac development
title_full Alterations in gene expression in T1α null lung: a model of deficient alveolar sac development
title_fullStr Alterations in gene expression in T1α null lung: a model of deficient alveolar sac development
title_full_unstemmed Alterations in gene expression in T1α null lung: a model of deficient alveolar sac development
title_sort alterations in gene expression in t1α null lung: a model of deficient alveolar sac development
publisher BMC
series BMC Developmental Biology
issn 1471-213X
publishDate 2006-07-01
description <p>Abstract</p> <p>Background</p> <p>Development of lung alveolar sacs of normal structure and size at late gestation is necessary for the gas exchange process that sustains respiration at birth. Mice lacking the lung differentiation gene T1α [T1α(-/-)] fail to form expanded alveolar sacs, resulting in respiratory failure at birth. Since little is known about the molecular pathways driving alveolar sacculation, we used expression microarrays to identify genes altered in the abnormal lungs and, by inference, may play roles in normal lung morphogenesis.</p> <p>Results</p> <p>Altered expression of genes related to cell-cell interaction, such as ephrinA3, are observed in T1α(-/-) at E18.5. At term, FosB, Egr1, MPK-1 and Nur77, which can function as negative regulators of the cell-cycle, are down-regulated. This is consistent with the hyperproliferation of peripheral lung cells in term T1α (-/-) lungs reported earlier. Biochemical assays show that neither PCNA nor p21 are altered at E18.5. At term in contrast, PCNA is increased, and p21 is decreased.</p> <p>Conclusion</p> <p>This global analysis has identified a number of candidate genes that are significantly altered in lungs in which sacculation is abnormal. Many genes identified were not previously associated with lung development and may participate in formation of alveolar sacs prenatally.</p>
url http://www.biomedcentral.com/1471-213X/6/35
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