An improved reverse transcription-polymerase chain reaction method to study apolipoprotein gene expression in Caco-2 cells.

We report a method for the detection and analysis of apolipoprotein B mRNA using the thermostable enzyme rTth to perform coupled reverse transcription-polymerase chain reaction (RT-PCR) amplification. This method, which is at least a 100-fold more sensitive than traditional RT-PCR, was used to exami...

Full description

Bibliographic Details
Main Authors: F Giannoni, F J Field, N O Davidson
Format: Article
Language:English
Published: Elsevier 1994-02-01
Series:Journal of Lipid Research
Online Access:http://www.sciencedirect.com/science/article/pii/S0022227520412222
id doaj-810bfa9fbb6b40cda7bbc1f3c8e8eb94
record_format Article
spelling doaj-810bfa9fbb6b40cda7bbc1f3c8e8eb942021-04-26T05:52:12ZengElsevierJournal of Lipid Research0022-22751994-02-01352340350An improved reverse transcription-polymerase chain reaction method to study apolipoprotein gene expression in Caco-2 cells.F Giannoni0F J Field1N O Davidson2Department of Medicine, University of Chicago, IL 60637.Department of Medicine, University of Chicago, IL 60637.Department of Medicine, University of Chicago, IL 60637.We report a method for the detection and analysis of apolipoprotein B mRNA using the thermostable enzyme rTth to perform coupled reverse transcription-polymerase chain reaction (RT-PCR) amplification. This method, which is at least a 100-fold more sensitive than traditional RT-PCR, was used to examine elements of apolipoprotein B (apoB) gene expression in Caco-2 cells. A region of apoB mRNA spanning the edited site was amplified from pre- and postconfluent Caco-2 cells both under different growth conditions and following alterations in exogenous lipid flux to determine changes in posttranscriptional editing. Apolipoprotein A-IV (apoA-IV) mRNA levels were examined in the same samples. The results suggest that apoB mRNA editing increases in Caco-2 cells during growth but this response is more variable than previously reported. Additionally, evidence was found for differential editing of the 14 kb and 7 kb transcripts. By contrast, there was a consistent growth-related increase in apoA-IV mRNA abundance. Neither apoB mRNA editing nor apoA-IV mRNA abundance was modulated in postconfluent cells in response to different combinations of exogenous lipid. This method should facilitate the study of apolipoprotein gene expression in Caco-2 cells and other situations where the target RNA is limited either as a result of low abundance or limiting tissue sample size.http://www.sciencedirect.com/science/article/pii/S0022227520412222
collection DOAJ
language English
format Article
sources DOAJ
author F Giannoni
F J Field
N O Davidson
spellingShingle F Giannoni
F J Field
N O Davidson
An improved reverse transcription-polymerase chain reaction method to study apolipoprotein gene expression in Caco-2 cells.
Journal of Lipid Research
author_facet F Giannoni
F J Field
N O Davidson
author_sort F Giannoni
title An improved reverse transcription-polymerase chain reaction method to study apolipoprotein gene expression in Caco-2 cells.
title_short An improved reverse transcription-polymerase chain reaction method to study apolipoprotein gene expression in Caco-2 cells.
title_full An improved reverse transcription-polymerase chain reaction method to study apolipoprotein gene expression in Caco-2 cells.
title_fullStr An improved reverse transcription-polymerase chain reaction method to study apolipoprotein gene expression in Caco-2 cells.
title_full_unstemmed An improved reverse transcription-polymerase chain reaction method to study apolipoprotein gene expression in Caco-2 cells.
title_sort improved reverse transcription-polymerase chain reaction method to study apolipoprotein gene expression in caco-2 cells.
publisher Elsevier
series Journal of Lipid Research
issn 0022-2275
publishDate 1994-02-01
description We report a method for the detection and analysis of apolipoprotein B mRNA using the thermostable enzyme rTth to perform coupled reverse transcription-polymerase chain reaction (RT-PCR) amplification. This method, which is at least a 100-fold more sensitive than traditional RT-PCR, was used to examine elements of apolipoprotein B (apoB) gene expression in Caco-2 cells. A region of apoB mRNA spanning the edited site was amplified from pre- and postconfluent Caco-2 cells both under different growth conditions and following alterations in exogenous lipid flux to determine changes in posttranscriptional editing. Apolipoprotein A-IV (apoA-IV) mRNA levels were examined in the same samples. The results suggest that apoB mRNA editing increases in Caco-2 cells during growth but this response is more variable than previously reported. Additionally, evidence was found for differential editing of the 14 kb and 7 kb transcripts. By contrast, there was a consistent growth-related increase in apoA-IV mRNA abundance. Neither apoB mRNA editing nor apoA-IV mRNA abundance was modulated in postconfluent cells in response to different combinations of exogenous lipid. This method should facilitate the study of apolipoprotein gene expression in Caco-2 cells and other situations where the target RNA is limited either as a result of low abundance or limiting tissue sample size.
url http://www.sciencedirect.com/science/article/pii/S0022227520412222
work_keys_str_mv AT fgiannoni animprovedreversetranscriptionpolymerasechainreactionmethodtostudyapolipoproteingeneexpressionincaco2cells
AT fjfield animprovedreversetranscriptionpolymerasechainreactionmethodtostudyapolipoproteingeneexpressionincaco2cells
AT nodavidson animprovedreversetranscriptionpolymerasechainreactionmethodtostudyapolipoproteingeneexpressionincaco2cells
AT fgiannoni improvedreversetranscriptionpolymerasechainreactionmethodtostudyapolipoproteingeneexpressionincaco2cells
AT fjfield improvedreversetranscriptionpolymerasechainreactionmethodtostudyapolipoproteingeneexpressionincaco2cells
AT nodavidson improvedreversetranscriptionpolymerasechainreactionmethodtostudyapolipoproteingeneexpressionincaco2cells
_version_ 1721508280189059072