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Catalog No: OKCA01920
Size:96 Wells
Price: $754.00
SKU
OKCA01920
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Datasheets/ManualsClick here to download product manual. As variation between lots may occur, always reference the lot-specific manual received with each kit.
Product Info
Predicted Species ReactivityRat
ELISA Kit Detection MethodColorimetric, OD450 nm
ELISA Kit Duration~ 3.5 Hours
ELISA Kit Linearity
DilutionMean Recovery (%)Range (%)
ELISA Kit PrincipleAviva Systems Biology Park7 ELISA Kit (Rat) (OKCA01920) is based on standard sandwich enzyme-linked immuno-sorbent assay technology. An antibody specific for Park7 has been pre-coated onto a 96-well plate (12 x 8 Well Strips). Standards or test samples are added to the wells, incubated and removed. A biotinylated detector antibody specific for Park7 is added, incubated and followed by washing. Avidin-Peroxidase Conjugate is then added, incubated and unbound conjugate is washed away. An enzymatic reaction is produced through the addition of TMB substrate which is catalyzed by HRP generating a blue color product that changes to yellow after adding acidic stop solution. The density of yellow coloration read by absorbance at 450 nm and is quantitatively proportional to the amount of sample Park7 captured in the well.
ELISA Kit Range0.312 - 20 ng/mL
ELISA Kit Recovery
SampleMean Recovery (%)Range (%)
Serum (n=5)10499-106
EDTA Plasma (n=4)9388-96
ELISA Kit Component
ComponentAmount
Park7 Microplate96 Wells (12 x 8 Well strips)
Park7 Lyophilized Standard2 x 20 ng
100X Biotinylated Park7 Detector Anitbody1 x 120 uL
100X Avidin-HRP Conjugate1 x 120 uL
Sample Diluent1 x 50 mL
Detector Antibody Diluent1 x 15 mL
Conjugate Diluent1 x 15 mL
25X Wash Buffer1 x 20 mL
Stop Solution1 x 10 mL
TMB Substrate1 x 10 mL
Reconstitution and StorageStore as indicated in product manual.
Sample TypeSerum, Plasma, Tissue Homogenates, Cell Lysates
Sensitivity0.078 ng/mL
Assay InfoAssay Methodology: Quantitative Sanadwich ELISA
Protocol Information
Gene SymbolPARK7
Gene Full NameParkinsonism associated deglycase
Alias SymbolsDj1, CAP1, DJ-1, SP22
NCBI Gene Id117287
Protein NameProtein deglycase DJ-1
Description of TargetProtein deglycase that repairs methylglyoxal- and glyoxal-glycated amino acids and proteins, and releases repaired proteins and lactate or glycolate, respectively. Deglycates cysteines, arginines and lysines residues in proteins, and thus reactivates these proteins by reversing glycation by glyoxals. Acts on early glycation intermediates (hemithioacetals and aminocarbinols), preventing the formation of advanced glycation endproducts (AGE). Plays an important role in cell protection against oxidative stress and cell death acting as oxidative stress sensor and redox-sensitive chaperone and protease; functions probably related to its primary function. It is involved in neuroprotective mechanisms like the stabilization of NFE2L2 and PINK1 proteins, male fertility as a positive regulator of androgen signaling pathway as well as cell growth and transformation through, for instance, the modulation of NF-kappa-B signaling pathway. Its involvement in protein repair could also explain other unrelated functions. Eliminates hydrogen peroxide and protects cells against hydrogen peroxide-induced cell death. Required for correct mitochondrial morphology and function as well as for autophagy of dysfunctional mitochondria. Plays a role in regulating expression or stability of the mitochondrial uncoupling proteins SLC25A14 and SLC25A27 in dopaminergic neurons of the substantia nigra pars compacta and attenuates the oxidative stress induced by calcium entry into the neurons via L-type channels during pacemaking. Regulates astrocyte inflammatory responses, may modulate lipid rafts-dependent endocytosis in astrocytes and neuronal cells. Binds to a number of mRNAs containing multiple copies of GG or CC motifs and partially inhibits their translation but dissociates following oxidative stress. Metal-binding protein able to bind copper as well as toxic mercury ions, enhances the cell protection mechanism against induced metal toxicity.
Uniprot IDO88767
Protein Accession #NP_001264179.1
Nucleotide Accession #NM_001277250.1
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