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Thermo Scientific™ Modifying Enzymes
Thermo Scientific enzymes for in vitro transcription are designed for efficient and reliable RNA synthesis. These enzymes cover the entire synthesis workflow from template preparation to post-transcriptional modifications, ensuring optimal performance and high yields of synthesized RNA.
$149.70 - $442.00
Catalog Number | Mfr. No. | Product Type | Concentration | Quantity | Price | Quantity & Availability | |||
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Catalog Number | Mfr. No. | Product Type | Concentration | Quantity | Price | Quantity & Availability | |||
FEREM167AF
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Thermo Scientific™
EM167AF |
Vaccinia mRNA Cap 2'-O-Methyltransferase | 50 U/μL | 20,000 U |
Each for $197.90
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FEREO166AF
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Thermo Scientific™
EO166AF |
Vaccinia Capping Enzyme | 10 U/μL | 4000 U |
Each for $276.50
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FEREL002AF
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Thermo Scientific™
EL002AF |
T4 RNA Ligase | 30 U/μL | 1500 U |
Each for $149.70
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FER4387661A
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Thermo Scientific™
4387661AF |
T4 RNA Ligase 2 | 10 U/μL | 1000 U |
Each for $406.00
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FEREN230AF
|
Thermo Scientific™
EN230AF |
DNase I | 50 U/μL | 5000 U |
Each for $442.00
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Description
Thermo Scientific enzymes for in vitro transcription are designed for efficient and reliable RNA synthesis. These enzymes cover the entire synthesis workflow from template preparation to post-transcriptional modifications, ensuring optimal performance and high yields of synthesized RNA.
High quality RNA synthesized by in vitro transcription is essential for RNA research and this versatile technique can be used in a variety of applications including the introduction of modified nucleotides into RNA transcripts for enhanced translational capacity and reduced immune activity of the cells.
Thermo Scientific enzymes for in vitro transcription are designed for efficient and reliable RNA synthesis. These enzymes cover the entire synthesis workflow from template preparation to post-transcriptional modifications, ensuring optimal performance and high yields of synthesized RNA.
High quality RNA synthesized by in vitro transcription is essential for RNA research and this versatile technique can be used in a variety of applications including the introduction of modified nucleotides into RNA transcripts for enhanced translational capacity and reduced immune activity of the cells.
Features
- Convenient stand-alone enzymes and buffers for workflow optimization
- No animal-origin components in final product composition
- Reliable and reproducible results with rigorous quality testing
- Scalable and available as OEM products
Applications
- CRISPR/Cas-based genome editing
- Gene expression
- Generation of pluripotent cells
Specifications
RNA Research |
For Research Use Only. Not for use in diagnostic procedures.
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