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Aquaporin 0 Modulates Lens Gap Junctions in the Presence of Lens-Specific Beaded Filament Proteins

PURPOSE: The objective of this study was to understand the molecular and physiologic mechanisms behind the lens cataract differences in Aquaporin 0-knockout-Heterozygous (AQP0-Htz) mice developed in C57 and FVB (lacks beaded filaments [BFs]) strains. METHODS: Lens transparency was studied using dark...

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Autores principales: Kumari, Sindhu, Gao, Junyuan, Mathias, Richard T., Sun, Xiurong, Eswaramoorthy, Amizhdini, Browne, Nicholas, Zhang, Nigel, Varadaraj, Kulandaiappan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Association for Research in Vision and Ophthalmology 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5710632/
https://www.ncbi.nlm.nih.gov/pubmed/29196765
http://dx.doi.org/10.1167/iovs.17-22153
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author Kumari, Sindhu
Gao, Junyuan
Mathias, Richard T.
Sun, Xiurong
Eswaramoorthy, Amizhdini
Browne, Nicholas
Zhang, Nigel
Varadaraj, Kulandaiappan
author_facet Kumari, Sindhu
Gao, Junyuan
Mathias, Richard T.
Sun, Xiurong
Eswaramoorthy, Amizhdini
Browne, Nicholas
Zhang, Nigel
Varadaraj, Kulandaiappan
author_sort Kumari, Sindhu
collection PubMed
description PURPOSE: The objective of this study was to understand the molecular and physiologic mechanisms behind the lens cataract differences in Aquaporin 0-knockout-Heterozygous (AQP0-Htz) mice developed in C57 and FVB (lacks beaded filaments [BFs]) strains. METHODS: Lens transparency was studied using dark field light microscopy. Water permeability (P(f)) was measured in fiber cell membrane vesicles. Western blotting/immunostaining was performed to verify expression of BF proteins and connexins. Microelectrode-based intact lens intracellular impedance was measured to determine gap junction (GJ) coupling resistance. Lens intracellular hydrostatic pressure (HP) was determined using a microelectrode/manometer system. RESULTS: Lens opacity and spherical aberration were more distinct in AQP0-Htz lenses from FVB than C57 strains. In either background, compared to wild type (WT), AQP0-Htz lenses showed decreased P(f) (approximately 50%), which was restored by transgenic expression of AQP1 (TgAQP1/AQP0-Htz), but the opacities and differences between FVB and C57 persisted. Western blotting revealed no change in connexin expression levels. However, in C57 AQP0-Htz and TgAQP1/AQP0-Htz lenses, GJ coupling resistance decreased approximately 2.8-fold and the HP gradient decreased approximately 1.9-fold. Increased P(f) in TgAQP1/AQP0-Htz did not alter GJ coupling resistance or HP. CONCLUSIONS: In C57 AQP0-Htz lenses, GJ coupling resistance decreased. HP reduction was smaller than the coupling resistance reduction, a reflection of an increase in fluid circulation, which is one reason for the less severe cataract in C57 than FVB. Overall, our results suggest that AQP0 modulates GJs in the presence of BF proteins to maintain lens transparency and homeostasis.
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spelling pubmed-57106322017-12-04 Aquaporin 0 Modulates Lens Gap Junctions in the Presence of Lens-Specific Beaded Filament Proteins Kumari, Sindhu Gao, Junyuan Mathias, Richard T. Sun, Xiurong Eswaramoorthy, Amizhdini Browne, Nicholas Zhang, Nigel Varadaraj, Kulandaiappan Invest Ophthalmol Vis Sci Lens PURPOSE: The objective of this study was to understand the molecular and physiologic mechanisms behind the lens cataract differences in Aquaporin 0-knockout-Heterozygous (AQP0-Htz) mice developed in C57 and FVB (lacks beaded filaments [BFs]) strains. METHODS: Lens transparency was studied using dark field light microscopy. Water permeability (P(f)) was measured in fiber cell membrane vesicles. Western blotting/immunostaining was performed to verify expression of BF proteins and connexins. Microelectrode-based intact lens intracellular impedance was measured to determine gap junction (GJ) coupling resistance. Lens intracellular hydrostatic pressure (HP) was determined using a microelectrode/manometer system. RESULTS: Lens opacity and spherical aberration were more distinct in AQP0-Htz lenses from FVB than C57 strains. In either background, compared to wild type (WT), AQP0-Htz lenses showed decreased P(f) (approximately 50%), which was restored by transgenic expression of AQP1 (TgAQP1/AQP0-Htz), but the opacities and differences between FVB and C57 persisted. Western blotting revealed no change in connexin expression levels. However, in C57 AQP0-Htz and TgAQP1/AQP0-Htz lenses, GJ coupling resistance decreased approximately 2.8-fold and the HP gradient decreased approximately 1.9-fold. Increased P(f) in TgAQP1/AQP0-Htz did not alter GJ coupling resistance or HP. CONCLUSIONS: In C57 AQP0-Htz lenses, GJ coupling resistance decreased. HP reduction was smaller than the coupling resistance reduction, a reflection of an increase in fluid circulation, which is one reason for the less severe cataract in C57 than FVB. Overall, our results suggest that AQP0 modulates GJs in the presence of BF proteins to maintain lens transparency and homeostasis. The Association for Research in Vision and Ophthalmology 2017-12 /pmc/articles/PMC5710632/ /pubmed/29196765 http://dx.doi.org/10.1167/iovs.17-22153 Text en Copyright 2017 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
spellingShingle Lens
Kumari, Sindhu
Gao, Junyuan
Mathias, Richard T.
Sun, Xiurong
Eswaramoorthy, Amizhdini
Browne, Nicholas
Zhang, Nigel
Varadaraj, Kulandaiappan
Aquaporin 0 Modulates Lens Gap Junctions in the Presence of Lens-Specific Beaded Filament Proteins
title Aquaporin 0 Modulates Lens Gap Junctions in the Presence of Lens-Specific Beaded Filament Proteins
title_full Aquaporin 0 Modulates Lens Gap Junctions in the Presence of Lens-Specific Beaded Filament Proteins
title_fullStr Aquaporin 0 Modulates Lens Gap Junctions in the Presence of Lens-Specific Beaded Filament Proteins
title_full_unstemmed Aquaporin 0 Modulates Lens Gap Junctions in the Presence of Lens-Specific Beaded Filament Proteins
title_short Aquaporin 0 Modulates Lens Gap Junctions in the Presence of Lens-Specific Beaded Filament Proteins
title_sort aquaporin 0 modulates lens gap junctions in the presence of lens-specific beaded filament proteins
topic Lens
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5710632/
https://www.ncbi.nlm.nih.gov/pubmed/29196765
http://dx.doi.org/10.1167/iovs.17-22153
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