3'-ONH₂-dATP plays a crucial role in the enzymatic synthesis of DNA.
This product can serve as a substrate for cell-free protein expression systems and is also suitable for use in in vitro transcription reactions with SP6, T3, and T7 RNA polymerases to generate RNA probes, or for RNA transcription followed by translation in an in vitro translation extract.
This product can serve as a substrate for cell-free protein expression systems and is also suitable for use in in vitro transcription reactions with SP6, T3, and T7 RNA polymerases to generate RNA probes, or for RNA transcription followed by translation in an in vitro translation extract.
This product can serve as a substrate for cell-free protein expression systems and is also suitable for use in in vitro transcription reactions with SP6, T3, and T7 RNA polymerases to generate RNA probes, or for RNA transcription followed by translation in an in vitro translation extract.
This product can serve as a substrate for cell-free protein expression systems and is also suitable for use in in vitro transcription reactions conducted with SP6, T3, and T7 RNA polymerases to generate RNA probes, or for RNA transcription followed by translation in an in vitro translation extract. Additionally, ATP can act as a cofactor for T4 DNA ligase, catalyzing its ligation reaction.
This product, 7-deaza-dGTP, can replace dGTP. During sequencing, it helps eliminate the G-band compression phenomenon and can also be used in PCR amplification of sequences with high GC content, thereby lowering the annealing temperature of the PCR reaction.