Identification | Back Directory | [Name]
FERRITIN, HUMAN | [CAS]
9007-73-2 | [Synonyms]
HSF IFN-b2 ferritins IL-6 from rat Ferritin  26 kDa protein FERRITIN HORSE FERRITIN, HUMAN FERRITIN TYPE I FERRITIN TYPE V FERRITIN (LIVER) FERRITIN TYPE IV FERRITIN, EQUINE FERRITIN (SPLEEN) FERRITIN, CATIONIZED Human Liver Ferritin FERRITIN, HUMAN LIVER hexadecane-1-sulfinate FERRITIN, EQUINE SPLEEN ferritin from human liver ferritin from human spleen Ferritin from horse spleen ferritin from equine spleen from Horse Spleen (100mg/1ml) Ferritin from human heart
Ferritin from human placenta
ferritin type I from horse spleen ferritin type iv from human liver ferritin type V from human spleen ferritin type vii from human heart FerritinExHorseSpleen2XCrystallised Ferritin (Horse Spleen) (100mg/1ml) B cell differentiation factor (BCDF) Ferritin from Horse Spleen (100mg/1ml) Ferritin, cationized from horse spleen ferritin type viii from human placenta*sterile fi Ferritin, Chromatographically-Purified, Cadmium-Free, Equine | [EINECS(EC#)]
232-704-0 | [Molecular Formula]
NULL | [MDL Number]
MFCD00081593 | [MOL File]
9007-73-2.mol | [Molecular Weight]
450000 |
Hazard Information | Back Directory | [Uses]
Tool for the study of protein synthesis and regulatory mechanisms. | [Definition]
FERRITIN, HUMAN is a major iron storage protein found in the spleen, liver and intestinal mucosa of vertebrates. It consists of a protein shell surrounding a crystalline, hydrated iron oxide-phosphate core. | [General Description]
Ferritin, an iron-storage protein is usually present in the liver and spleen in mammals. Iron and?ferritin?are distributed relatively same in the eye. Ferritin is made up of heavy and light chains. | [Biochem/physiol Actions]
Ferritin holds iron at its ferric state (Fe3+). The core of ferritin?has the capability to hold 4500 iron molecules. It is essential to store iron in vertebrates. Ferritin?is also essential to store and transport iron in invertebrates. It plays a key role in dietary iron absorption. | [Purification Methods]
The purification of this major iron-binding protein is achieved by homogenisation in water and precipitation with ammonium sulfate, repeating the cycle of ultracentrifugation, and molecular sieve chromatography through a Sephadex 4B column. Isoelectric focusing reveals a broad spectrum of impurities which can be separated by ion-exchange chromatography on Sephadex A-25 and stepwise elution. [Konijn et al. Anal Biochem 144 423 1985.] |
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