Pitfalls of reverse transcription quantitative polymerase chain reaction standardization: Volume-related inhibitors of reverse transcription

被引:11
|
作者
Pugniere, Pascal [1 ]
Banzet, Sebastien
Chaillou, Thomas
Mouret, Catherine [1 ]
Peinnequin, Andre [1 ]
机构
[1] IRBA La Tronche, Genom Core Facil, F-38702 La Tronche, France
关键词
Reverse transcription; RT-qPCR; mRNA quantification; Standardization; Inhibitor; MIQE guidelines; MESSENGER-RNA; REAL-TIME; SECONDARY STRUCTURE; GENE-EXPRESSION; PCR; QUANTIFICATION; EXTRACTION;
D O I
10.1016/j.ab.2011.04.008
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
A large part of the reliability of reverse transcription quantitative polymerase chain reaction (RT-qPCR) data depends on technical variations. Such variations are mainly attributable to the reverse transcription step. Standardization is a key factor in decreasing the intersample variability. However, an ideal standardization is not always possible, and compromises must be found. Due to technical requirements, the current consensus is that a constant amount of total RNA should be used for the RI step (CA-RI). Because RNA isolation yields are variable, such a practice requires the use of variable volumes of nucleic acid extracts in RI reaction. We demonstrate that some RNA extracts contain both exogenous and endogenous inhibitors. These inhibitors induce a decrease in RT efficiency that significantly impairs the reliability of RT-qPCR data. Conversely, these inhibitors have a slight effect on the qPCR step. To overcome such drawbacks, we proposed to carry out the RT reaction with a constant volume of RNA extract by preserving a constant RNA amount through the supplementation of yeast transfer RNA (CV-RI). We show that CV-RT, compared with the usual CA-RI, allows us to decrease the RT-qPCR variability induced by intersample differences. Such a decrease is a prerequisite for the reliability of messenger RNA quantification. (C) 2011 Elsevier Inc. All rights reserved.
引用
收藏
页码:151 / 157
页数:7
相关论文
共 50 条
  • [1] Effect of duration of fixation on quantitative reverse transcription polymerase chain reaction analyses
    Macabeo-Ong, M
    Ginzinger, DG
    Dekker, N
    McMillan, A
    Regezi, JA
    Wong, DTW
    Jordan, RCK
    MODERN PATHOLOGY, 2002, 15 (09) : 979 - 987
  • [2] Assessment of viable periodontal pathogens by reverse transcription quantitative polymerase chain reaction
    Polonyi, M.
    Prenninger, N.
    Arweiler, N. B.
    Haririan, H.
    Winklehner, P.
    Kierstein, S.
    JOURNAL OF PERIODONTAL RESEARCH, 2013, 48 (05) : 671 - 676
  • [3] Contribution of cell culture, RNA extraction, and reverse transcription to the measurement error in quantitative reverse transcription polymerase chain reaction-based gene expression quantification
    Combes, Jean-Damien
    Grelier, Gael
    Laversanne, Matthieu
    Voirin, Nicolas
    Chabaud, Sylvie
    Ecochard, Ren
    Lasset, Christine
    Moyret-Lalle, Caroline
    ANALYTICAL BIOCHEMISTRY, 2009, 393 (01) : 29 - 35
  • [4] Reverse Transcription Polymerase Chain Reaction in Giant Unilamellar Vesicles
    Tsugane, Mamiko
    Suzuki, Hiroaki
    SCIENTIFIC REPORTS, 2018, 8
  • [5] Substantial performance discrepancies among commercially available kits for reverse transcription quantitative polymerase chain reaction: A systematic comparative investigator-driven approach
    Sieber, Matthias W.
    Recknagel, Peter
    Glaser, Florian
    Witte, Otto W.
    Bauer, Michael
    Claus, Ralf A.
    Frahm, Christiane
    ANALYTICAL BIOCHEMISTRY, 2010, 401 (02) : 303 - 311
  • [6] Deconvolution of the confounding variations for reverse transcription quantitative real-time polymerase chain reaction by separate analysis of biological replicate data
    Ling, Daijun
    Pike, Christian J.
    Salvaterra, Paul M.
    ANALYTICAL BIOCHEMISTRY, 2012, 427 (01) : 21 - 25
  • [7] Comparison of reverse transcription-quantitative polymerase chain reaction methods and platforms for single cell gene expression analysis
    Fox, Bridget C.
    Devonshire, Alison S.
    Baradez, Marc-Olivier
    Marshall, Damian
    Foy, Carole A.
    ANALYTICAL BIOCHEMISTRY, 2012, 427 (02) : 178 - 186
  • [8] Detection of Salmonella enteritidis by reverse transcription-polymerase chain reaction (PCR)
    Szabo, EA
    Mackey, BM
    INTERNATIONAL JOURNAL OF FOOD MICROBIOLOGY, 1999, 51 (2-3) : 113 - 122
  • [9] Potato virus a detection by reverse transcription-polymerase chain reaction
    Cerovská, N
    Petrzik, K
    Moravec, T
    Mráz, I
    ACTA VIROLOGICA, 1998, 42 (02) : 83 - 85
  • [10] Detection of Japanese encephalitis virus by reverse transcription/polymerase chain reaction
    Paranjpe, S
    Banerjee, K
    ACTA VIROLOGICA, 1998, 42 (01) : 5 - 11