Quantitative reverse transcription strand displacement amplification: Quantitation of nucleic acids using an isothermal amplification technique

被引:34
作者
Nycz, CM [1 ]
Dean, CH [1 ]
Harland, PD [1 ]
Spargo, CA [1 ]
Walker, GT [1 ]
机构
[1] Becton Dickinson Res Ctr, Dept Mol Biol, Res Triangle Pk, NC 27709 USA
关键词
D O I
10.1006/abio.1998.2641
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Recent advances in nucleic acid amplification techniques have allowed for quantitation of viral nucleic acid levels in clinical specimens. The most prevalent testing is carried out for HIV viral load. Strand displacement amplification (SDA) is an isothermal DNA amplification system utilizing a restriction enzyme and a DNA polymerase with strand displacement properties. SDA was adapted for quantitative RNA amplification (QRT-SDA) of an HIV gag sequence by including AMV reverse transcriptase, a quantitative control sequence, and P-32-labeled detector oligonucleotides for the HIV and the control sequences. me have also improved the amplification efficiency by including the single-strand binding protein from gene 32 of T4 bacteriophage (T4gp32) to enhance strand displacement replication. In a preliminary analytical demonstration of the technique, RT-SDA was quantitative to within twofold over a range of 500-500,000 transcripts that were generated from a plasmid bearing an HIV gag sequence. QRT-SDA potentially represents a convenient alternative for viral load testing in a clinical setting. (C) 1998 Academic Press.
引用
收藏
页码:226 / 234
页数:9
相关论文
共 26 条
[11]   A COMMENTARY ON THE PRACTICAL APPLICATIONS OF COMPETITIVE PCR [J].
RAEYMAEKERS, L .
GENOME RESEARCH, 1995, 5 (01) :91-94
[12]   QUANTITATIVE PCR - THEORETICAL CONSIDERATIONS WITH PRACTICAL IMPLICATIONS [J].
RAEYMAEKERS, L .
ANALYTICAL BIOCHEMISTRY, 1993, 214 (02) :582-585
[13]   Comparative evaluation of NASBA HIV-1 RNA QT, AMPLICOR-HIV monitor, and QUANTIPLEX HIV RNA assay, three methods for quantification of human immunodeficiency virus type I RNA in plasma [J].
Revets, H ;
Marissens, D ;
DeWit, S ;
Lacor, P ;
Clumeck, N ;
Lauwers, S ;
Zissis, G .
JOURNAL OF CLINICAL MICROBIOLOGY, 1996, 34 (05) :1058-1064
[14]   THE INFLUENCE OF A DOUBLE-STRANDED HINDRANCE ON DNA-SYNTHESIS PERFORMED BY DNA POLYMERASE-ALPHA, T4 DNA-POLYMERASE, DNA-POLYMERASE-I (KLENOW FRAGMENT) AND AMV REVERSE-TRANSCRIPTASE [J].
SCAMROV, AV ;
BEABEALASHVILLI, RS .
FEBS LETTERS, 1988, 228 (01) :144-148
[15]   IMPROVED YIELDS OF LONG PCR PRODUCTS USING GENE-32 PROTEIN [J].
SCHWARZ, K ;
HANSENHAGGE, T ;
BARTRAM, C .
NUCLEIC ACIDS RESEARCH, 1990, 18 (04) :1079-1079
[16]   CRYSTAL-STRUCTURE OF A REPLICATION FORK SINGLE-STRANDED-DNA BINDING-PROTEIN (T4 GP32) COMPLEXED TO DNA [J].
SHAMOO, Y ;
FRIEDMAN, AM ;
PARSONS, MR ;
KONIGSBERG, WH ;
STEITZ, TA .
NATURE, 1995, 376 (6538) :362-366
[17]  
SHENGYU Y, 1987, SCI SIN B, V30, P503
[18]   CHEMILUMINESCENT DETECTION OF STRAND DISPLACEMENT AMPLIFIED DNA FROM SPECIES COMPRISING THE MYCOBACTERIUM-TUBERCULOSIS COMPLEX [J].
SPARGO, CA ;
HAALAND, PD ;
JURGENSEN, SR ;
SHANK, DD ;
WALKER, GT .
MOLECULAR AND CELLULAR PROBES, 1993, 7 (05) :395-404
[19]   Detection of M-tuberculosis DNA using thermophilic strand displacement amplification [J].
Spargo, CA ;
Fraiser, MS ;
VanCleve, M ;
Wright, DJ ;
Nycz, CM ;
Spears, PA ;
Walker, GT .
MOLECULAR AND CELLULAR PROBES, 1996, 10 (04) :247-256
[20]  
SPEARS PA, 1997, ANAL BIOCH