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A propos de cet article
Numéro CAS:
UNSPSC Code:
12352204
eCl@ss:
32160410
NACRES:
NA.54
MDL number:
Specific activity:
350-600 units/mg protein
Biological source:
rabbit muscle
Service technique
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Laissez-nous vous aiderbiological source
rabbit muscle
Quality Segment
type
Type II
form
ammonium sulfate suspension
specific activity
350-600 units/mg protein
mol wt
237 kDa
storage condition
(Tightly closed)
technique(s)
ligand binding assay: suitable
color
white
foreign activity
lactic dehydrogenase, creatine phosphokinase, and myokinase ≤0.01%, phosphoglucomutase ≤0.05%
storage temp.
2-8°C
General description
Research Area: Cell Signaling
Pyruvate kinase from rabbit muscle catalyzes ATP-dependent phosphorylation of glycolate to yield 2-phosphoglycolate.Pyruvate kinase, an enzyme, is found in a tetrameric or a dimeric form. PKM1, PKM2, PKR, and PKL are the four mammalian pyruvate kinase isoforms.
Pyruvate kinase from rabbit muscle catalyzes ATP-dependent phosphorylation of glycolate to yield 2-phosphoglycolate.Pyruvate kinase, an enzyme, is found in a tetrameric or a dimeric form. PKM1, PKM2, PKR, and PKL are the four mammalian pyruvate kinase isoforms.
Application
Pyruvate kinase from rabbit muscle has been used in:
- a structural study to understand the reaction mechanism of the final step in glycolysis.
- a study to investigate ATP-dependent phosphorylation of α-substituted carboxylic acids.
- enzyme assays.
Biochem/physiol Actions
Pyruvate kinase from rabbit muscle can be activated by histidine and inhibited by low levels of zinc (Zn2+). In the glycolytic pathway, pyruvate kinase (PK) functions as a terminal enzyme, catalyzing the conversion of phosphoenolpyruvate to pyruvate and the synthesis of ATP through substrate-level phosphorylation. Tetrameric structures of PK are more active and have a high affinity for phosphoenolpyruvate (PEP), whereas dimeric structures are less active and have a low affinity for PEP. PK from rabbit muscle possesses positive kinetic cooperativity (Hill coefficient> 1.35) of the phosphoenol pyruvate and adenosine diphosphate(ADP) binding sites.
Molecular Weight: 237 kDa and exists as a tetramer of four equal subunits of molecular weight 57 kDa.
Isoelectric Point: 7.6
Optimal pH: ∼7.5
Optimal Temperature: 25°C
ΕA280 = 0.54 for 1 mg(p)/ml, 1 cm path
Reported KM values are ATP (0.86 mM), pyruvate (10 mM), ADP (0.3 mM), and PEP (0.07 mM) in Tris buffer at pH 7.4 and 30 °C. Pyruvate kinase is highly specific for phosphoenolpyruvate, but can utilize other dinucleotide triphosphates as substrates in place of ATP including GTP, ITP, dATP, UTP, and CTP.
Isoelectric Point: 7.6
Optimal pH: ∼7.5
Optimal Temperature: 25°C
ΕA280 = 0.54 for 1 mg(p)/ml, 1 cm path
Reported KM values are ATP (0.86 mM), pyruvate (10 mM), ADP (0.3 mM), and PEP (0.07 mM) in Tris buffer at pH 7.4 and 30 °C. Pyruvate kinase is highly specific for phosphoenolpyruvate, but can utilize other dinucleotide triphosphates as substrates in place of ATP including GTP, ITP, dATP, UTP, and CTP.
Physical form
Suspension in 3.2 M (NH4)2SO4 solution, pH 6
Analysis Note
Protein determined by biuret.
Other Notes
One unit will convert 1.0 μmole of phospho(enol)pyruvate to pyruvate per min at pH 7.6 at 37 °C.
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WGK 2
flash_point_f
Not applicable
flash_point_c
Not applicable
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