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Promega

GoScript™ Reverse Transcriptase Mixes

Legendary GoScript reverse transcriptase is now available as a master mix with Oligo(dT) or Random Primers
Sensitive transcription of both high-copy and low-copy messages
Transcribes short and long transcripts; processes through secondary structure

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Sensitive Reverse Transcriptase Ideal for Challenging Templates

 

GoScript™ Reverse Transcriptase utilizes M-MLV reverse transcriptase enzyme and state-of-the-art buffer to drive robust, reliable cDNA synthesis of a full range of rare and abundant transcripts, even with difficult templates and in the presence of PCR inhibitors.

Resilient: Synthesizes cDNA in the presence of strong PCR inhibitors like ethanol
Sensitive: Transcribes both high copy and low copy messages 
Reliable: Processes through secondary structure
Processive: Transcribes short and long transcripts
 
One Enzyme, Four Convenient Formats
GoScript™ Reverse Transcriptase is available in convenient mixes with either Oligo (dT) primers or random primers, as part of a complete kit, and as a stand-alone enzyme.
 
GoScript™ Reverse Transcription Mix, Oligo(dT)

GoScript™ Reverse Transcription Mix, Oligo(dT) includes an optimized set of reagents designed for efficient synthesis of first-strand cDNA. The Oligo(dT) priming initiates first-strand synthesis by annealing to the 3’ end of any polyadenylated RNA molecule. Reverse Transcription of total RNA or mRNA will yield oligo(dT)-primed products from any poly(A)+RNA. The population of cDNAs produced using this method allows many different downstream analyses from a single reverse transcription reaction.

 

GoScript™ Reverse Transcription Mix, Random Primers

Includes random primers for synthesis of first-strand cDNA in preparation for qPCR amplification. Priming using random primers is the most generally used method of initiating cDNA synthesis from a variety of RNA templates. Random primers can be used to prime first-strand cDNA synthesis from all RNA molecules, including those that do not possess a poly(A)+ tail and RNA isolated from prokaryotic sources.

 

More details and performance data

 

 

 

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