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Lipoxygenase, 500 mg

Lipoxygenase, 500 mg

Art.-Nr. CN73.2
€ 815,55
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Lipoxygenase, 500 mg
Produktbeschreibung
HS-Code: 35079090
Marke: Carl Roth
Lipoxygenase, min. 100.000 U/mg, for biochemistry, Molar mass (M) ~108 000 g/mol, Storage temp. -20 °C, CAS No. [9029-60-1], EG-Nr. 232-853-1


Lipoxygenase ≥100 000 U/mg, for biochemistry

Lipoxygenase stereo-specifically catalyses the oxidation of arachidonic acid, initiating the formation of leukotrienes in eicosanoid metabolism.


Unit-definitie

One unit will cause an increase in absorption (234 nm) of 0.001 per minute at 25 °C and pH 9 by oxidation of linoleic acid.


Gebruiksinstructies



Enzyme: a neoclassical, Greek artificial word ενζυμου, énzymon, derived from εν-, en- (in-) and ζυμη, zýmé (yeast, sourdough, archaic)
Ferments: comes from the Latin fermentum (ferments, sourdough)

There are six classes in which all enzymes are classified according to the particular reaction they catalyse:

• Oxidoreductases (catalyse redox reactions)

• Transferases (transfer functional groups among substrates)

• Hydrolases (cleave bonds via addition of water)

• Lyases/Synthases (cleave or synthesise complex products out of basic substrates without cleavage of ATP)

• Isomerases (transform chemical isomers)

• Ligases/Synthetases (cleave or synthesise complex products out of basic substrates via cleavage of ATP)


Enzyme: a neoclassical, Greek artificial word ενζυμου, énzymon, derived from εν-, en- (in-) and ζυμη, zýmé (yeast, sourdough, archaic)
Ferments: comes from the Latin fermentum (ferments, sourdough)

There are six classes in which all enzymes are classified according to the particular reaction they catalyse:

• Oxidoreductases (catalyse redox reactions)

• Transferases (transfer functional groups among substrates)

• Hydrolases (cleave bonds via addition of water)

• Lyases/Synthases (cleave or synthesise complex products out of basic substrates without cleavage of ATP)

• Isomerases (transform chemical isomers)

• Ligases/Synthetases (cleave or synthesise complex products out of basic substrates via cleavage of ATP)


Activity ≥100 000 U/mg
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