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Differential expression of the Slc4 bicarbonate transporter family in murine corneal endothelium and cell culture

PURPOSE: To characterize the relative expression levels of all the solute carrier 4 (Slc4) transporter family members (Slc4a1–Slc4a11) in murine corneal endothelium using real-time quantitative (qPCR), to identify further important members besides Slc4a11 and Slc4a4, and to explore how close to the...

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Autores principales: Shei, William, Liu, Jun, Htoon, Hla M., Aung, Tin, Vithana, Eranga N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Molecular Vision 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3668641/
https://www.ncbi.nlm.nih.gov/pubmed/23734078
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author Shei, William
Liu, Jun
Htoon, Hla M.
Aung, Tin
Vithana, Eranga N.
author_facet Shei, William
Liu, Jun
Htoon, Hla M.
Aung, Tin
Vithana, Eranga N.
author_sort Shei, William
collection PubMed
description PURPOSE: To characterize the relative expression levels of all the solute carrier 4 (Slc4) transporter family members (Slc4a1–Slc4a11) in murine corneal endothelium using real-time quantitative (qPCR), to identify further important members besides Slc4a11 and Slc4a4, and to explore how close to the baseline levels the gene expressions remain after cells have been subjected to expansion and culture. METHODS: Descemet’s membrane-endothelial layers of 8–10-week-old C57BL6 mice were stripped from corneas and used for both primary cell culture and direct RNA extraction. Total RNA (from uncultured cells as well as cultured cells at passages 2 and 7) was reverse transcribed, and the cDNA was used for real time qPCR using specific primers for all the Slc4 family members. The geNorm method was applied to determine the most stable housekeeping genes and normalization factor, which was calculated from multiple housekeeping genes for more accurate and robust quantification. RESULTS: qPCR analyses revealed that all Slc4 bicarbonate transporter family members were expressed in mouse corneal endothelium. Slc4a11 showed the highest expression, which was approximately three times higher than that of Slc4a4 (3.4±0.3; p=0.004). All Slc4 genes were also expressed in cultured cells, and interestingly, the expression of Slc4a11 in cultured cells was significantly reduced by approximately 20-fold (0.05±0.001; p=0.000001) in early passage and by approximately sevenfold (0.14±0.002; p=0.000002) in late passage cells. CONCLUSIONS: Given the known involvement of SLC4A4 and SLC4A11 in corneal dystrophies, we speculate that the other two highly expressed genes in the uncultured corneal endothelium, SLC4A2 and SLC4A7, are worthy of being considered as potential candidate genes for corneal endothelial diseases. Moreover, as cell culture can affect expression levels of Slc4 genes, caution and careful design of experiments are necessary when undertaking studies of Slc4-mediated ion transport in cultured cells.
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spelling pubmed-36686412013-06-03 Differential expression of the Slc4 bicarbonate transporter family in murine corneal endothelium and cell culture Shei, William Liu, Jun Htoon, Hla M. Aung, Tin Vithana, Eranga N. Mol Vis Research Article PURPOSE: To characterize the relative expression levels of all the solute carrier 4 (Slc4) transporter family members (Slc4a1–Slc4a11) in murine corneal endothelium using real-time quantitative (qPCR), to identify further important members besides Slc4a11 and Slc4a4, and to explore how close to the baseline levels the gene expressions remain after cells have been subjected to expansion and culture. METHODS: Descemet’s membrane-endothelial layers of 8–10-week-old C57BL6 mice were stripped from corneas and used for both primary cell culture and direct RNA extraction. Total RNA (from uncultured cells as well as cultured cells at passages 2 and 7) was reverse transcribed, and the cDNA was used for real time qPCR using specific primers for all the Slc4 family members. The geNorm method was applied to determine the most stable housekeeping genes and normalization factor, which was calculated from multiple housekeeping genes for more accurate and robust quantification. RESULTS: qPCR analyses revealed that all Slc4 bicarbonate transporter family members were expressed in mouse corneal endothelium. Slc4a11 showed the highest expression, which was approximately three times higher than that of Slc4a4 (3.4±0.3; p=0.004). All Slc4 genes were also expressed in cultured cells, and interestingly, the expression of Slc4a11 in cultured cells was significantly reduced by approximately 20-fold (0.05±0.001; p=0.000001) in early passage and by approximately sevenfold (0.14±0.002; p=0.000002) in late passage cells. CONCLUSIONS: Given the known involvement of SLC4A4 and SLC4A11 in corneal dystrophies, we speculate that the other two highly expressed genes in the uncultured corneal endothelium, SLC4A2 and SLC4A7, are worthy of being considered as potential candidate genes for corneal endothelial diseases. Moreover, as cell culture can affect expression levels of Slc4 genes, caution and careful design of experiments are necessary when undertaking studies of Slc4-mediated ion transport in cultured cells. Molecular Vision 2013-05-24 /pmc/articles/PMC3668641/ /pubmed/23734078 Text en Copyright © 2013 Molecular Vision. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Shei, William
Liu, Jun
Htoon, Hla M.
Aung, Tin
Vithana, Eranga N.
Differential expression of the Slc4 bicarbonate transporter family in murine corneal endothelium and cell culture
title Differential expression of the Slc4 bicarbonate transporter family in murine corneal endothelium and cell culture
title_full Differential expression of the Slc4 bicarbonate transporter family in murine corneal endothelium and cell culture
title_fullStr Differential expression of the Slc4 bicarbonate transporter family in murine corneal endothelium and cell culture
title_full_unstemmed Differential expression of the Slc4 bicarbonate transporter family in murine corneal endothelium and cell culture
title_short Differential expression of the Slc4 bicarbonate transporter family in murine corneal endothelium and cell culture
title_sort differential expression of the slc4 bicarbonate transporter family in murine corneal endothelium and cell culture
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3668641/
https://www.ncbi.nlm.nih.gov/pubmed/23734078
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