Modifying Enzymes

Modifying Enzymes

Modifying Enzymes
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  1. Alkaline Phosphatase (Shrimp)

    SAP is irreversibly heat inactivated at 65°C for 15 minutes, allowing for streamlining of cloning experiments

  2. Alkaline Phosphatase (E coli C75)

    Catalyses the removal of most phosphomonoester bonds from the 5' and 3' termini of DNA and RNA without degrading diphosphate or triphosphate linkages

  3. Alkaline Phosphatase (Calf Intestine)

    Catalyses the hydrolysis of 5'-phosphate termini from DNA, RNA, dNTPs and rNTPs

  4. S1 Nuclease

    Degrades single-stranded nucleic acids, including the single-stranded regions of duplex DNA, RNA, or DNA/RNA

  5. Ribonuclease H (RNase H)

    Hydrolyses single-stranded RNA via a magnesium or manganese cofactor

  6. Recombinant DNase I (RNase-free)

    Nonspecifically catalyzes the degradation of both single- and double-stranded DNA and DNA-RNA hybrids

  7. Mung Bean Nuclease

    Hydrolyse single-stranded DNA and RNA into 5'-phosphate- and 3'-hydroxyl-containing products

  8. Micrococcal Nuclease

    Endonuclease that preferentially digests single-stranded DNA and RNA, especially at AT or AU rich regions

  9. Exonuclease III

    3' to 5' exonuclease that removes mononucleotides from the 3'-hydroxyl termini of double-stranded DNA or DNA-RNA hybrids

  10. Exonuclease I

    3' to 5' exonuclease for single-stranded DNA degradation, resulting in the production of 5'-phosphate mononucleotides

  11. Cryonase Cold-Active Nuclease

    Digest all types of DNA and RNA (single-stranded, double-stranded, linear or circularised), even on ice

  12. Yatalase Enzyme

    Used to lyse the cell walls of filamentous fungi

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