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Efficient<i>in vitro</i>synthesis of biologically active RNA and RNA hybridization probes from plasmids containing a bacteriophage SP6 promoter

Nucleic Acids Research · 1984 · Vol. 12(18) · pp. 7035–7056
Douglas A. MeltonPaul A. KriegMichael R. RebagliatiTom ManiatisKai ZinnM. R. Green

Abstract

A simple and efficient method for synthesizing pure single stranded RNAs of virtually any structure is described. This in vitro transcription system is based on the unusually specific RNA synthesis by bacteriophage SP6 RNA polymerase which initiates transcription exclusively at an SP6 promoter. We have constructed convenient cloning vectors that contain an SP6 promoter immediately upstream from a polylinker sequence. Using these SP6 vectors, optimal conditions have been established for in vitro RNA synthesis. The advantages and uses of SP6 derived RNAs as probes for nucleic acid blot and solution hybridizations are demonstrated. We show that single stranded RNA probes of a high specific activity are easy to prepare and can significantly increase the sensitivity of nucleic acid hybridization methods. Furthermore, the SP6 transcription system can be used to prepare RNA substrates for studies on RNA processing (1,5,9) and translation (see accompanying paper).

RNA and protein synthesis mechanismsBacteriophages and microbial interactionsRNA modifications and cancerBiologyRNATranscription (linguistics)Nucleic acidT7 RNA polymeraseMolecular biologyRNA-dependent RNA polymerasePolymeraseNucleic acid thermodynamicsDNA

MeSH terms

Base SequenceCloning, MolecularDNA Restriction EnzymesGenetic VectorsKineticsNucleic Acid HybridizationOperonPlasmidsDNA-Directed RNA PolymerasesRNA, ViralSalmonella PhagesSalmonella typhimuriumTranscription, Genetic

Funding

  • National Science Foundation
  • Searle Scholars Program
  • National Institutes of Health
  • Fogarty International Center
Citations
6,447
FWCI
198.75
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39
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References
A new method for sequencing DNA.
Proceedings of the National Academy of Sciences · 1977 · 7,962 citations
Hybridization of nucleic acids immobilized on solid supports
Analytical Biochemistry · 1984 · 1,349 citations
Genomic sequencing.
Proceedings of the National Academy of Sciences · 1984 · 8,225 citations
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