Endogenous laminin is required for human airway smooth muscle cell maturation

<p>Abstract</p> <p>Background</p> <p>Airway smooth muscle (ASM) contraction underlies acute bronchospasm in asthma. ASM cells can switch between a synthetic-proliferative phenotype and a contractile phenotype. While the effects of extracellular matrix (ECM) components o...

Full description

Bibliographic Details
Main Authors: Tran Thai, McNeill Karol D, Gerthoffer William T, Unruh Helmut, Halayko Andrew J
Format: Article
Language:English
Published: BMC 2006-09-01
Series:Respiratory Research
Online Access:http://respiratory-research.com/content/7/1/117
id doaj-10c89a0e50fc4c6598ef81dd635332b8
record_format Article
spelling doaj-10c89a0e50fc4c6598ef81dd635332b82020-11-24T21:35:58ZengBMCRespiratory Research1465-99212006-09-017111710.1186/1465-9921-7-117Endogenous laminin is required for human airway smooth muscle cell maturationTran ThaiMcNeill Karol DGerthoffer William TUnruh HelmutHalayko Andrew J<p>Abstract</p> <p>Background</p> <p>Airway smooth muscle (ASM) contraction underlies acute bronchospasm in asthma. ASM cells can switch between a synthetic-proliferative phenotype and a contractile phenotype. While the effects of extracellular matrix (ECM) components on modulation of ASM cells to a synthetic phenotype have been reported, the role of ECM components on maturation of ASM cells to a contractile phenotype in adult lung is unclear. As both changes in ECM components and accumulation of contractile ASM are features of airway wall remodelling in asthma, we examined the role of the ECM protein, laminin, in the maturation of contractile phenotype in human ASM cells.</p> <p>Methods</p> <p>Human ASM cells were made senescence-resistant by stable expression of human telomerase reverse transcriptase. Maturation to a contractile phenotype was induced by 7-day serum deprivation, as assessed by immunoblotting for desmin and calponin. The role of laminin on ASM maturation was investigated by comparing the effects of exogenous laminin coated on culture plates, and of soluble laminin peptide competitors. Endogenous expression of laminin chains during ASM maturation was also measured.</p> <p>Results</p> <p>Myocyte binding to endogenously expressed laminin was required for ASM phenotype maturation, as laminin competing peptides (YIGSR or GRGDSP) significantly reduced desmin and calponin protein accumulation that otherwise occurs with prolonged serum deprivation. Coating of plastic cell culture dishes with different purified laminin preparations was not sufficient to further promote accumulation of desmin or calponin during 7-day serum deprivation. Expression of α2, β1 and γ1 laminin chains by ASM cells was specifically up-regulated during myocyte maturation, suggesting a key role for laminin-2 in the development of the contractile phenotype.</p> <p>Conclusion</p> <p>While earlier reports suggest exogenously applied laminin slows the spontaneous modulation of ASM to a synthetic phenotype, we show for the first time that endogenously expressed laminin is required for ASM maturation to the contractile phenotype. As endogenously expressed laminin chains α2, β1 and γ1 are uniquely increased during myocyte maturation, these laminin chains may be key in this process. Thus, human ASM maturation appears to involve regulated endogenous expression of a select set of laminin chains that are essential for accumulation of contractile phenotype myocytes.</p> http://respiratory-research.com/content/7/1/117
collection DOAJ
language English
format Article
sources DOAJ
author Tran Thai
McNeill Karol D
Gerthoffer William T
Unruh Helmut
Halayko Andrew J
spellingShingle Tran Thai
McNeill Karol D
Gerthoffer William T
Unruh Helmut
Halayko Andrew J
Endogenous laminin is required for human airway smooth muscle cell maturation
Respiratory Research
author_facet Tran Thai
McNeill Karol D
Gerthoffer William T
Unruh Helmut
Halayko Andrew J
author_sort Tran Thai
title Endogenous laminin is required for human airway smooth muscle cell maturation
title_short Endogenous laminin is required for human airway smooth muscle cell maturation
title_full Endogenous laminin is required for human airway smooth muscle cell maturation
title_fullStr Endogenous laminin is required for human airway smooth muscle cell maturation
title_full_unstemmed Endogenous laminin is required for human airway smooth muscle cell maturation
title_sort endogenous laminin is required for human airway smooth muscle cell maturation
publisher BMC
series Respiratory Research
issn 1465-9921
publishDate 2006-09-01
description <p>Abstract</p> <p>Background</p> <p>Airway smooth muscle (ASM) contraction underlies acute bronchospasm in asthma. ASM cells can switch between a synthetic-proliferative phenotype and a contractile phenotype. While the effects of extracellular matrix (ECM) components on modulation of ASM cells to a synthetic phenotype have been reported, the role of ECM components on maturation of ASM cells to a contractile phenotype in adult lung is unclear. As both changes in ECM components and accumulation of contractile ASM are features of airway wall remodelling in asthma, we examined the role of the ECM protein, laminin, in the maturation of contractile phenotype in human ASM cells.</p> <p>Methods</p> <p>Human ASM cells were made senescence-resistant by stable expression of human telomerase reverse transcriptase. Maturation to a contractile phenotype was induced by 7-day serum deprivation, as assessed by immunoblotting for desmin and calponin. The role of laminin on ASM maturation was investigated by comparing the effects of exogenous laminin coated on culture plates, and of soluble laminin peptide competitors. Endogenous expression of laminin chains during ASM maturation was also measured.</p> <p>Results</p> <p>Myocyte binding to endogenously expressed laminin was required for ASM phenotype maturation, as laminin competing peptides (YIGSR or GRGDSP) significantly reduced desmin and calponin protein accumulation that otherwise occurs with prolonged serum deprivation. Coating of plastic cell culture dishes with different purified laminin preparations was not sufficient to further promote accumulation of desmin or calponin during 7-day serum deprivation. Expression of α2, β1 and γ1 laminin chains by ASM cells was specifically up-regulated during myocyte maturation, suggesting a key role for laminin-2 in the development of the contractile phenotype.</p> <p>Conclusion</p> <p>While earlier reports suggest exogenously applied laminin slows the spontaneous modulation of ASM to a synthetic phenotype, we show for the first time that endogenously expressed laminin is required for ASM maturation to the contractile phenotype. As endogenously expressed laminin chains α2, β1 and γ1 are uniquely increased during myocyte maturation, these laminin chains may be key in this process. Thus, human ASM maturation appears to involve regulated endogenous expression of a select set of laminin chains that are essential for accumulation of contractile phenotype myocytes.</p>
url http://respiratory-research.com/content/7/1/117
work_keys_str_mv AT tranthai endogenouslamininisrequiredforhumanairwaysmoothmusclecellmaturation
AT mcneillkarold endogenouslamininisrequiredforhumanairwaysmoothmusclecellmaturation
AT gerthofferwilliamt endogenouslamininisrequiredforhumanairwaysmoothmusclecellmaturation
AT unruhhelmut endogenouslamininisrequiredforhumanairwaysmoothmusclecellmaturation
AT halaykoandrewj endogenouslamininisrequiredforhumanairwaysmoothmusclecellmaturation
_version_ 1725943018277568512