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Enzymes

Enzymes are proteins that possess a specific activity. They are especially studied in enzymology science. These proteins are involved in most processes of any organism, from metabolism to cell signaling, regulation, signal transduction, and cell adhesion. Enzymes often end with “ase”.
Enzymes usually act on a substrate that is bound to it. Besides, enzyme can act allosterically. An activator binds to the enzyme and activates it. Once activated, the enzyme is able to modify a substrate bound to it. For instance it can bind a cofactor to a ligand or cleave between amino acids.

Enzymes have a precise classification based on their activity. They are named with E.C code.
There are 6 main classes of enzymes: oxydoreductases (E.C.1), transferases (E.C.2), hydrolase (E.C.3), lyases (E.C.4), isomerases (E.C.5) and ligases (E.C.6).
Enzymes usually have very descriptive names. Oxydoreductases manage biochemical oxydo-reduction reactions. In addition to oxidase or reductase, this class contains dehydrogenases that are responsible for hydrogen removal. It often takes place thanks to hydrogen accepting cofactors such as NAD+ or NADP+.
Transferases remove small molecular groups from one location to another. Such molecules include methyls, acyls, glycosyls, nitrogenous, phosphorus and sulfurous groups. Kinases are transferases that bind a phosphate group from high energy molecules to its substrates.
Hydrolases hydrolyses various chemical bounds. Among them nucleases cleaves nucleic acids bonds. Exonucleases cut these bonds from the ends of DNA or RNA strains whereas endonucleases can manage this in the middle of strains. Hydrolases may also be named after the substrate they hydrolyse such as maltases or amylases.
Lyases cleave atomic bonds. They are further separated depending on the atoms involved, carbons, oxygen, nitrogen, sulfur or phosphorus for example.
Isomerases catalyse the mutation between isomers such as epimers or enantiomers. They are especially usefull in Metabolism cycles.
Ligases bind atoms together on the contrary to lyases. They are named in the same manner.

In addition to the study of cellular mechanism and cell biology, enzymes are also used as biotechnology tools. They provide efficient means to operate complex transformations on biomolecules. Proteases or peptidases for example can cleave proteins between specific amino acids. Restriction enzymes are nucleases used to cleave selective sequence. Taq DNA polymerase is now commonly used in PCR. Given their origin species, they have specific properties that can be further engineered.
Proteogenix offers various enzymes including tool enzymes for your experiments.

848 products
  • Mycobacterium PptT Recombinant Protein

    Mycobacterium PptT Recombinant Protein

    • PX-P1124
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Mycobacterium
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • N-acetylneuraminate lyase(nanA)

    N-acetylneuraminate lyase(nanA)

    • PX-P4320
    Host species:
    Escherichia coli (E.coli)
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • SDS-PAGE for N-acyl homoserine lactonase(aiiA)

    N-acyl homoserine lactonase(aiiA)

    • PX-P4602
    • 2 publications
    Host species:
    Escherichia coli (E.coli)
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • N-acylneuraminate cytidylyltransferase(neuA) His Tag

    N-acylneuraminate cytidylyltransferase(neuA) His Tag

    • PX-P4334
    Host species:
    Escherichia coli (E.coli)
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • N6-adenosine-methyltransferase catalytic subunit

    N6-adenosine-methyltransferase catalytic subunit

    • PX-P4474
    Host species:
    Insect
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • NADPH oxidase 4(NOX4) (210-424)

    NADPH oxidase 4(NOX4) (210-424)

    • PX-P4785
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Homo sapiens (Human)
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Ornithine carbamoyltransferase, mitochondrial(OTC)

    Ornithine carbamoyltransferase, mitochondrial(OTC)

    • PX-P4880
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Homo sapiens (Human)
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • PAPD5 HUMAN Protein

    PAPD5 HUMAN Protein

    • PX-P4250
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Homo sapiens (Human)
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • PAPD5 MOUSE Protein (8812)

    PAPD5 MOUSE Protein (8812)

    • PX-P4251
    Host species:
    Escherichia coli (E.coli)
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • PAPD7 MACMU Protein (8812)

    PAPD7 MACMU Protein (8812)

    • PX-P4255
    Host species:
    Escherichia coli (E.coli)
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • PAPD7 MOUSE Protein

    PAPD7 MOUSE Protein

    • PX-P4254
    Host species:
    Escherichia coli (E.coli)
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • PCNA protein - Proliferating cell nuclear antigen

    PCNA protein - Proliferating cell nuclear antigen

    • PX-P4847
    Host species:
    Escherichia coli (E.coli)
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • PelB-DN1-ST (virer PelB) Recombinant Protein

    PelB-DN1-ST (virer PelB) Recombinant Protein

    • PX-P2086
    • 1 publication
    Host species:
    Escherichia coli (E.coli)
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Peripheral plasma membrane protein CASK(CASK) (1-926)

    Peripheral plasma membrane protein CASK(CASK) (1-926)

    • PX-P4393
    Host species:
    Escherichia coli (E.coli)
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Peripheral plasma membrane protein CASK(CASK) (2-925)

    Peripheral plasma membrane protein CASK(CASK) (2-925)

    • PX-P4819
    Host species:
    Escherichia coli (E.coli)
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
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