A1271
Adenosine 5′-monophosphate–Agarose
lyophilized powder
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About This Item
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biological source
plant (Sea weed)
form
lyophilized powder
extent of labeling
1-5 μmol per mL
matrix
cross-linked 4% beaded agarose
matrix activation
cyanogen bromide
matrix attachment
C-8
matrix spacer
9 atoms
storage temp.
−20°C
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Application
Adenosine 5′-monophosphate Agarose (5′-AMP agarose) has been used in affinity chromatography to isolate β and gamma glutamate decarboxylase, which is important for controlling gamma-aminobutyric acid (GABA) synthesis in brain.
Physical form
Lyophilized powder stabilized with lactose
Storage Class Code
11 - Combustible Solids
WGK
WGK 3
Flash Point(F)
Not applicable
Flash Point(C)
Not applicable
Personal Protective Equipment
dust mask type N95 (US), Eyeshields, Gloves
Certificates of Analysis (COA)
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The Journal of biological chemistry, 270(38), 22344-22350 (1995-09-22)
The plant enzyme S-adenosylmethionine:methionine S-methyltransferase (EC 2.1.1.12, MMT) catalyzes the synthesis of S-methylmethionine. MMT was purified 620-fold to apparent homogeneity from leaves of Wollastonia biflora. The four-step purification included fractionation with polyethylene glycol, affinity chromatography on adenosine-agarose, anion exchange chromatography
Cellular and molecular neurobiology, 7(3), 237-253 (1987-09-01)
1. Glutamate decarboxylase is a focal point for controlling gamma-aminobutyric acid (GABA) synthesis in brain. Several factors that appear to be important in the regulation of GABA synthesis have been identified by relating studies of purified glutamate decarboxylase to conditions
FEBS letters, 316(3), 261-263 (1993-02-01)
The mosquito homolog of mammalian DNA polymerase epsilon, formerly known as a proliferating cell nuclear antigen (PCNA)-independent form of DNA polymerase delta, has been purified from mosquito larval extracts. The polymerase epsilon was separated from DNA polymerase alpha by chromatography
Applied and environmental microbiology, 67(10), 4919-4921 (2001-09-26)
Streptomyces cattleya is unusual in that it produces fluoroacetate and 4-fluorothreonine as secondary metabolites. We now report the isolation of an NAD(+)-dependent fluoroacetaldehyde dehydrogenase from S. cattleya that mediates the oxidation of fluoroacetaldehyde to fluoroacetate. This is the first enzyme
Clinical chemistry, 27(1), 88-93 (1981-01-01)
We present a method for preparing human liver lactate dehydrogenase (L-lactate:NAD+ oxidoreductase; EC 1.1.1.27) isoenzyme-5 by sequential ion-exchange chromatography, general-ligand (AMP analog) affinity chromatography, and preparative isoelectric focusing. The yield ws 40%, with a 493-fold purification. The final specific activity
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