Catalase Protein, Bacillus

Catalase proteins play an essential role in cellular defense mechanisms by catalyzing the degradation of hydrogen peroxide (H2O2), a reactive oxygen species produced by peroxisomal oxidases, into water and oxygen. crucial role. This enzyme activity is an important line of defense, protecting cells from the toxic effects of hydrogen peroxide. Catalase Protein, Bacillus is the recombinant Catalase protein, expressed by E. coli, with tag free.

For research use only. We do not sell to patients.
  • Species: Others
  • Source: E. coli
  • Biological Activity
  • Product Properties
  • Documentation
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Biological Activity

Description

Catalase proteins play an essential role in cellular defense mechanisms by catalyzing the degradation of hydrogen peroxide (H2O2), a reactive oxygen species produced by peroxisomal oxidases, into water and oxygen. crucial role. This enzyme activity is an important line of defense, protecting cells from the toxic effects of hydrogen peroxide. Catalase Protein, Bacillus is the recombinant Catalase protein, expressed by E. coli, with tag free.

Background

Catalase is an enzyme that plays a crucial role in cellular defense by catalyzing the degradation of hydrogen peroxide (H2O2) to water and oxygen. This enzymatic activity is particularly important for neutralizing the toxic effects of hydrogen peroxide, a reactive oxygen species generated by peroxisomal oxidases. By efficiently converting hydrogen peroxide into non-toxic byproducts, catalase serves as a key component of the antioxidant defense system, protecting cells from oxidative stress. Serval researches indicatethat catalase's protective role extends to various cell types, promoting the growth of T-cells, B-cells, myeloid leukemia cells, melanoma cells, mastocytoma cells, and both normal and transformed fibroblast cells. This highlights catalase's significance in maintaining cellular homeostasis and supporting the growth of diverse cell populations.

Technical Parameters

  • Species Others
  • Source E. coli
  • Tag Tag Free
  • Accession
  • Gene ID
  • Molecular Construction
    • N-term
    • Catalase (M1-A483)
      Accession # A0A5Q2YYB9
    • C-term
  • Protein Length

    Full Length

  • Synonyms

    Catalase; 1.11.1.6; GII81_04775

  • AA Sequence

    MSSNKLTTSWGAPVGDNQNSMTAGSRGPTLIQDVHLLEKLAHFNRERVPERVVHAKGAGAHGYFEVTNDVTKYTKAAFLSEVGKRTPLFIRFSTVAGELGSADTVRDPRGFAVKFYTEEGNYDIVGNNTPVFFIRDAIKFPDFIHTQKRDPKTHLKNPTAVWDFWSLSPESLHQVTILMSDRGIPATLRHMHGFGSHTFKWTNAEGEGVWIKYHFKTEQGVKNLDVNTAAKIAGENPDYHTEDLFNAIENGDYPAWKLYVQIMPLEDANTYRFDPFDVTKVWSQKDYPLIEVGRMVLDRNPENYFVEVEQATFSPGTLVPGIDVSPDKMLQGRLFAYHDAHRYRVGANHQALPINRARNKVNNYQRDGQMRFDDNGGGSVYYEPNSFGGPKESPEDKQAAYPVQGIADSVSYDHNDHYTQAGDLYRLMSEDERTRLVENIVNAMKPVEKEEIKLRQIEHFYKADPEYGKRVAEGLGLPIKKDA

  • Purity

    ≥ 90%, as determined by reducing SDS-PAGE.

Calculators

Reconstitution Calculator

Volume (to add to vial) = Mass (in vial) ÷ Desired Reconstitution Concentration

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=
Mass (in vial) Mass (in vial)
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Desired Reconstitution Concentration Desired Reconstitution Concentration
Dilution Calculator

Concentration (start) × Volume (start) = Concentration (final) × Volume (final)

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The Specific Activity Calculator Equation
  • Specific Activity (Unit/mg)
  • Biological Activity (ED50)

Specific Activity (Unit/mg) = 106 ÷ Biological Activity (ED50)

Specific Activity (Unit/mg) Specific Activity (Unit/mg)
Unit/mg
= 106 ÷
Biological Activity (ED50) Biological Activity (ED50)
106 ÷
ng/mL
MOQ
Minimum order quantity
100 mg

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