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U7752
Urease aus Canavalia ensiformis (Jack bean)
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About This Item
Empfohlene Produkte
Biologische Quelle
Canavalia ensiformis
Qualitätsniveau
Form
solid
Mol-Gew.
hexamer 545 kDa
trimer ~272 kDa
Enthält
~20% dithiothreitol
Eignung
suitable for marker for electrophoresis (non-denaturing PAGE)
Lagertemp.
−20°C
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Allgemeine Beschreibung
Molekulargewicht der Untereinheit: ~90,770
Besteht aus sechs Untereinheiten mit einem Molekulargewicht von ~544,620
Besteht aus sechs Untereinheiten mit einem Molekulargewicht von ~544,620
Urease is a multi-subunit nickel-dependent metalloenzyme. It is found abundantly in fungi, yeast, plants, and bacteria. It belongs to the superfamily of amidohydrolases and phosphotriesterases. Urease is also found in leguminous seeds.
Anwendung
Urease from Canavalia ensiformis (Jack bean) has been used:
- as a component of the molecular mass standard in electrophoresis
- as a component of the standard in size-exclusion chromatography
- as a reference in native-polyacrylamide gel electrophoresis (PAGE)
Biochem./physiol. Wirkung
Urease is an essential enzyme of the nitrogen cycle. It plays a role in degrading urea into ammonia and carbamate. Urease provides a source of nitrogen for growth to various organisms. It also plays a major role in seed germination and seed chemical defense.
Sonstige Hinweise
Contains approx. 1 mg protein
Signalwort
Danger
H-Sätze
Gefahreneinstufungen
Eye Irrit. 2 - Resp. Sens. 1 - Skin Irrit. 2 - STOT SE 3
Zielorgane
Respiratory system
Lagerklassenschlüssel
11 - Combustible Solids
WGK
WGK 1
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PloS one, 16(10), e0258568-e0258568 (2021-10-15)
Urea is the most popular and widely used nitrogenous fertilizer. High soil urease activity rapidly hydrolyses applied urea to ammonia which contributes to soil nitrogen (N) losses and reduces N use efficiency of crop plants. The ammonia losses can be
Journal of molecular biology, 400(3), 274-283 (2010-05-18)
Urease, a nickel-dependent metalloenzyme, is synthesized by plants, some bacteria, and fungi. It catalyzes the hydrolysis of urea into ammonia and carbon dioxide. Although the amino acid sequences of plant and bacterial ureases are closely related, some biological activities differ
Prevention of infected urinary stones by urease inhibition.
Investigative urology, 11(3), 228-233 (1973-11-01)
Journal of advanced research, 13, 101-112 (2018-08-11)
Urease is a nickel-dependent metalloenzyme found in plants, some bacteria, and fungi. Bacterial enzyme is of special importance since it has been demonstrated as a potent virulence factor for some species. Especially it is central to Helicobacter pylori metabolism and
Cell, 156(4), 771-785 (2014-02-18)
mTORC1 promotes cell growth in response to nutrients and growth factors. Insulin activates mTORC1 through the PI3K-Akt pathway, which inhibits the TSC1-TSC2-TBC1D7 complex (the TSC complex) to turn on Rheb, an essential activator of mTORC1. However, the mechanistic basis of how
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