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Selection of housekeeping genes for use in quantitative reverse transcription PCR assays on the murine cornea

PURPOSE: To evaluate the suitability of common housekeeping genes (HKGs) for use in quantitative reverse transcription PCR (qRT–PCR) assays of the cornea in various murine disease models. METHODS: Corneal disease models studied were: 1) corneal neovascularization (CorNV) induced by suture or chemica...

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Autores principales: Ren, Shengwei, Zhang, Feng, Li, Changyou, Jia, Changkai, Li, Siyuan, Xi, Haijie, Zhang, Hongbo, Yang, Lingling, Wang, Yiqiang
Formato: Texto
Lenguaje:English
Publicado: Molecular Vision 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2893048/
https://www.ncbi.nlm.nih.gov/pubmed/20596249
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author Ren, Shengwei
Zhang, Feng
Li, Changyou
Jia, Changkai
Li, Siyuan
Xi, Haijie
Zhang, Hongbo
Yang, Lingling
Wang, Yiqiang
author_facet Ren, Shengwei
Zhang, Feng
Li, Changyou
Jia, Changkai
Li, Siyuan
Xi, Haijie
Zhang, Hongbo
Yang, Lingling
Wang, Yiqiang
author_sort Ren, Shengwei
collection PubMed
description PURPOSE: To evaluate the suitability of common housekeeping genes (HKGs) for use in quantitative reverse transcription PCR (qRT–PCR) assays of the cornea in various murine disease models. METHODS: Corneal disease models studied were: 1) corneal neovascularization (CorNV) induced by suture or chemical burn, 2) corneal infection with Candida albicans or Aspergillus fumigatus by intrastromal injection of live spores, and 3) perforating corneal injury (PCI) in Balb/c mice or C57BL/6 mice. Expression of 8 HKGs (glyceraldehyde-3-phosphate dehydrogenase [GAPDH], beta-actin [ACTB], lactate dehydrogenase A [LDHA], ribosomal protein L5 [RPL5], ubiquitin C [UBC], peptidylprolyl isomerase A [PPIA], TATA-box binding protein [TBP1], and hypoxanthine guanine phosphoribosyl transferase [HPRT1]) in the cornea were measured at various time points by microarray hybridization or qRT–PCR and the data analyzed using geNorm and NormFinder. RESULTS: Microarray results showed that under the CorNV condition the expression stability of the 8 HKGs decreased in order of PPIA>RPL5>HPRT1>ACTB>UBC>TBP1>GAPDH>LDHA. qRT–PCR analyses demonstrated that expression of none of the 8 HKGs remained stable under all conditions, while GAPDH and ACTB were among the least stably expressed markers under most conditions. Both geNorm and NormFinder analyses proposed best HKGs or HKG combinations that differ between the various models. NormFinder proposed PPIA as best HKG for three CorNV models and PCI model, as well as UBC for two fungal keratitis models. geNorm analysis demonstrated that a similar model in different mice strains or caused by different stimuli may require different HKGs or HKG pairs for the best normalization. Namely, geNorm proposed PPIA and HRPT1 and PPIA and RPL5 pairs for chemical burn-induced CorNV in Balb/c and C57BL/6 mice, respectively, while UBC and HPRT1 and UBC and LDHA were best for Candida and Aspergillus induced keratitis in Balb/c mice, respectively. CONCLUSIONS: When qRT–PCR is designed for studies of gene expression in murine cornea, preselection of situation-specific reference genes is recommended. In the absence of knowledge about situation-specific HKGs, PPIA and UBC, either alone or in combination with HPRT1 or RPL5, can be employed.
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spelling pubmed-28930482010-07-01 Selection of housekeeping genes for use in quantitative reverse transcription PCR assays on the murine cornea Ren, Shengwei Zhang, Feng Li, Changyou Jia, Changkai Li, Siyuan Xi, Haijie Zhang, Hongbo Yang, Lingling Wang, Yiqiang Mol Vis Research Article PURPOSE: To evaluate the suitability of common housekeeping genes (HKGs) for use in quantitative reverse transcription PCR (qRT–PCR) assays of the cornea in various murine disease models. METHODS: Corneal disease models studied were: 1) corneal neovascularization (CorNV) induced by suture or chemical burn, 2) corneal infection with Candida albicans or Aspergillus fumigatus by intrastromal injection of live spores, and 3) perforating corneal injury (PCI) in Balb/c mice or C57BL/6 mice. Expression of 8 HKGs (glyceraldehyde-3-phosphate dehydrogenase [GAPDH], beta-actin [ACTB], lactate dehydrogenase A [LDHA], ribosomal protein L5 [RPL5], ubiquitin C [UBC], peptidylprolyl isomerase A [PPIA], TATA-box binding protein [TBP1], and hypoxanthine guanine phosphoribosyl transferase [HPRT1]) in the cornea were measured at various time points by microarray hybridization or qRT–PCR and the data analyzed using geNorm and NormFinder. RESULTS: Microarray results showed that under the CorNV condition the expression stability of the 8 HKGs decreased in order of PPIA>RPL5>HPRT1>ACTB>UBC>TBP1>GAPDH>LDHA. qRT–PCR analyses demonstrated that expression of none of the 8 HKGs remained stable under all conditions, while GAPDH and ACTB were among the least stably expressed markers under most conditions. Both geNorm and NormFinder analyses proposed best HKGs or HKG combinations that differ between the various models. NormFinder proposed PPIA as best HKG for three CorNV models and PCI model, as well as UBC for two fungal keratitis models. geNorm analysis demonstrated that a similar model in different mice strains or caused by different stimuli may require different HKGs or HKG pairs for the best normalization. Namely, geNorm proposed PPIA and HRPT1 and PPIA and RPL5 pairs for chemical burn-induced CorNV in Balb/c and C57BL/6 mice, respectively, while UBC and HPRT1 and UBC and LDHA were best for Candida and Aspergillus induced keratitis in Balb/c mice, respectively. CONCLUSIONS: When qRT–PCR is designed for studies of gene expression in murine cornea, preselection of situation-specific reference genes is recommended. In the absence of knowledge about situation-specific HKGs, PPIA and UBC, either alone or in combination with HPRT1 or RPL5, can be employed. Molecular Vision 2010-06-11 /pmc/articles/PMC2893048/ /pubmed/20596249 Text en Copyright © 2010 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
Ren, Shengwei
Zhang, Feng
Li, Changyou
Jia, Changkai
Li, Siyuan
Xi, Haijie
Zhang, Hongbo
Yang, Lingling
Wang, Yiqiang
Selection of housekeeping genes for use in quantitative reverse transcription PCR assays on the murine cornea
title Selection of housekeeping genes for use in quantitative reverse transcription PCR assays on the murine cornea
title_full Selection of housekeeping genes for use in quantitative reverse transcription PCR assays on the murine cornea
title_fullStr Selection of housekeeping genes for use in quantitative reverse transcription PCR assays on the murine cornea
title_full_unstemmed Selection of housekeeping genes for use in quantitative reverse transcription PCR assays on the murine cornea
title_short Selection of housekeeping genes for use in quantitative reverse transcription PCR assays on the murine cornea
title_sort selection of housekeeping genes for use in quantitative reverse transcription pcr assays on the murine cornea
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2893048/
https://www.ncbi.nlm.nih.gov/pubmed/20596249
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