Inhibition of hyaluronan synthesis reduces versican and fibronectin levels in trabecular meshwork cells.

Hyaluronan (HA) is a major component of the extracellular matrix (ECM) and is synthesized by three HA synthases (HAS). Similarities between the HAS2 knockout mouse and the hdf mutant mouse, which has a mutation in the versican gene, suggest that HA and versican expression may be linked. In this stud...

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Main Authors: Kate E Keller, Ying Ying Sun, Janice A Vranka, Lauren Hayashi, Ted S Acott
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3489675?pdf=render
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author Kate E Keller
Ying Ying Sun
Janice A Vranka
Lauren Hayashi
Ted S Acott
author_facet Kate E Keller
Ying Ying Sun
Janice A Vranka
Lauren Hayashi
Ted S Acott
author_sort Kate E Keller
collection DOAJ
description Hyaluronan (HA) is a major component of the extracellular matrix (ECM) and is synthesized by three HA synthases (HAS). Similarities between the HAS2 knockout mouse and the hdf mutant mouse, which has a mutation in the versican gene, suggest that HA and versican expression may be linked. In this study, the relationship between HA synthesis and levels of versican, fibronectin and several other ECM components in trabecular meshwork cells from the anterior segment of the eye was investigated. HA synthesis was inhibited using 4-methylumbelliferone (4MU), or reduced by RNAi silencing of each individual HAS gene. Quantitative RT-PCR and immunoblotting demonstrated a reduction in mRNA and protein levels of versican and fibronectin. Hyaluronidase treatment also reduced versican and fibronectin levels. These effects could not be reversed by addition of excess glucose or glucosamine or exogenous HA to the culture medium. CD44, tenascin C and fibrillin-1 mRNA levels were reduced by 4MU treatment, but SPARC and CSPG6 mRNA levels were unaffected. Immunostaining of trabecular meshwork tissue after exposure to 4MU showed an altered localization pattern of HA-binding protein, versican and fibronectin. Reduction of versican by RNAi silencing did not affect HA concentration as assessed by ELISA. Together, these data imply that HA concentration affects synthesis of certain ECM components. Since precise regulation of the trabecular meshwork ECM composition and organization is required to maintain the aqueous humor outflow resistance and intraocular pressure homeostasis in the eye, coordinated coupling of HA levels and several of its ECM binding partners should facilitate this process.
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spelling doaj.art-033b46c351d04690913efd0f4bf860152022-12-22T02:18:58ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-01711e4852310.1371/journal.pone.0048523Inhibition of hyaluronan synthesis reduces versican and fibronectin levels in trabecular meshwork cells.Kate E KellerYing Ying SunJanice A VrankaLauren HayashiTed S AcottHyaluronan (HA) is a major component of the extracellular matrix (ECM) and is synthesized by three HA synthases (HAS). Similarities between the HAS2 knockout mouse and the hdf mutant mouse, which has a mutation in the versican gene, suggest that HA and versican expression may be linked. In this study, the relationship between HA synthesis and levels of versican, fibronectin and several other ECM components in trabecular meshwork cells from the anterior segment of the eye was investigated. HA synthesis was inhibited using 4-methylumbelliferone (4MU), or reduced by RNAi silencing of each individual HAS gene. Quantitative RT-PCR and immunoblotting demonstrated a reduction in mRNA and protein levels of versican and fibronectin. Hyaluronidase treatment also reduced versican and fibronectin levels. These effects could not be reversed by addition of excess glucose or glucosamine or exogenous HA to the culture medium. CD44, tenascin C and fibrillin-1 mRNA levels were reduced by 4MU treatment, but SPARC and CSPG6 mRNA levels were unaffected. Immunostaining of trabecular meshwork tissue after exposure to 4MU showed an altered localization pattern of HA-binding protein, versican and fibronectin. Reduction of versican by RNAi silencing did not affect HA concentration as assessed by ELISA. Together, these data imply that HA concentration affects synthesis of certain ECM components. Since precise regulation of the trabecular meshwork ECM composition and organization is required to maintain the aqueous humor outflow resistance and intraocular pressure homeostasis in the eye, coordinated coupling of HA levels and several of its ECM binding partners should facilitate this process.http://europepmc.org/articles/PMC3489675?pdf=render
spellingShingle Kate E Keller
Ying Ying Sun
Janice A Vranka
Lauren Hayashi
Ted S Acott
Inhibition of hyaluronan synthesis reduces versican and fibronectin levels in trabecular meshwork cells.
PLoS ONE
title Inhibition of hyaluronan synthesis reduces versican and fibronectin levels in trabecular meshwork cells.
title_full Inhibition of hyaluronan synthesis reduces versican and fibronectin levels in trabecular meshwork cells.
title_fullStr Inhibition of hyaluronan synthesis reduces versican and fibronectin levels in trabecular meshwork cells.
title_full_unstemmed Inhibition of hyaluronan synthesis reduces versican and fibronectin levels in trabecular meshwork cells.
title_short Inhibition of hyaluronan synthesis reduces versican and fibronectin levels in trabecular meshwork cells.
title_sort inhibition of hyaluronan synthesis reduces versican and fibronectin levels in trabecular meshwork cells
url http://europepmc.org/articles/PMC3489675?pdf=render
work_keys_str_mv AT kateekeller inhibitionofhyaluronansynthesisreducesversicanandfibronectinlevelsintrabecularmeshworkcells
AT yingyingsun inhibitionofhyaluronansynthesisreducesversicanandfibronectinlevelsintrabecularmeshworkcells
AT janiceavranka inhibitionofhyaluronansynthesisreducesversicanandfibronectinlevelsintrabecularmeshworkcells
AT laurenhayashi inhibitionofhyaluronansynthesisreducesversicanandfibronectinlevelsintrabecularmeshworkcells
AT tedsacott inhibitionofhyaluronansynthesisreducesversicanandfibronectinlevelsintrabecularmeshworkcells