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StressMarq/MOLECULAR SIGNATURE® Anti-Nitrotyrosine Antibody [39B6]/SMC-154D-A390/100-µg
Overview:
Product Name | Nitrotyrosine Antibody | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Description | Mouse Anti- Nitrotyrosine Monoclonal IgG2a | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Species Reactivity | Species Independent | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Applications | WB, IHC, ICC/IF, IP, ELISA, FCM, AM | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Antibody Dilution | WB (1:1400), IHC (1:100); optimal dilutions for assays should be determined by the user. | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Host Species | Mouse | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Immunogen | Hybridoma line 39B6 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Concentration | 1 mg/ml | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Conjugates |
Alkaline Phosphatase, APC, ATTO 390, ATTO 488, ATTO 565, ATTO 594, ATTO 633, ATTO 655, ATTO 680, ATTO 700, Biotin, FITC, HRP, PE/ATTO 594, PerCP, RPE, Streptavidin, Unconjugated
StreptavidinProperties:
Streptavidin Datasheet BiotinProperties:
Biotin Datasheet HRP (Horseradish peroxidase)Properties:
HRP Datasheet AP (Alkaline Phosphatase)Properties:
AP Datasheet
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Properties
Storage Buffer | PBS, 50% glycerol, 0.09% sodium azide |
Storage Temperature | -20ºC |
Shipping Temperature | Blue Ice or 4ºC |
Purification | Protein G Purified |
Clonality | Monoclonal |
Clone Number | 39B6 |
Isotype | IgG2a |
Specificity | Recognizes 3-nitrotyrosine moieties. No detectable cross-reactivity with non-nitrated tyrosine. Not species specific. |
Cite This Product | StressMarq Biosciences Cat# SMC-154, RRID: AB_904533 |
Certificate of Analysis | 0.7 µg/ml of SMC-154 was sufficient for detection of 5 µg SIN-1 treated BSA by Western Blot analysis using Goat anti-mouse IgG:HRP as the secondary antibody. |
Biological Description
Alternative Names | Nitro tyrosine Antibody, 3-Nitrotyrosine Antibody |
Research Areas | Cancer, Alzheimer's Disease, Cell Signaling, Neurodegeneration, Neuroscience, Nitration, Oxidative Stress, Parkinson's Disease, Post-translational Modifications |
Scientific Background | Protein tyrosine nitration results in a post-translational modification that is increasingly receiving attention as an important component of nitric oxide signaling (2). While multiple nonenzymatic mechanisms are known to be capable of producing nitrated tyrosine residues, most tyrosine nitration events involve catalysis by metalloproteins such as myeloperoxidase, eosino-philperoxidase (3), myoglobin, the cytochrome P-450s, superoxide dismutase and prostacyclin synthase. Nitrotyrosine may also serve as a biomarker for the effects of reactive nitrogen oxides, based on tyrosine residues becoming nitrated in proteins at sites of inflammation induced tissue injury (1). The presence of nitro tyrosine-containing proteins therefore has shown high correlation to disease states such as atherosclerosis, Alzheimer’s disease, Parkinson’s disease and amyotrophic lateral sclerosis (4). |
References |
1. Girault I. et al. (2001). Free Radical Biology and Medicine, 31 (11): 1375-1387. 2. Gow AJ, Farkouh CR, Munson DA, Posencheq MA, and Ischiropoulos H. (2004). Am J Physiol Lung Cell Mol Physiol. 287(2): L262-8. 3. Takemoto K. et al (2007). Acta Med Okayama 61(1): 17-30. 4. Reynolds MR. et al. (2006) J Nerosci. 26(42): 10636-45. 5. Pfister H., et al. (2002) Vet Pathol. 39: 190-199. 6. Khan J. et al. (1998) Biochem J. 330(2): 795-801. |
Product Images
Immunohistochemistry analysis using Mouse Anti-Nitrotyrosine Monoclonal Antibody, Clone 39B6 (SMC-154). Tissue: Retinal Injury Model. Species: Mouse. Primary Antibody: Mouse Anti-Nitrotyrosine Monoclonal Antibody (SMC-154) at 1:1000. Secondary Antibody: Alexa Fluor 594 Goat Anti-Mouse (red). Courtesy of: Dr. Rajashekhar Gangaraju, University of Indiana, Department of Opthamology, Eugene and Marilyn Glick Eye Institute.
Immunohistochemistry analysis using Mouse Anti-Nitrotyrosine Monoclonal Antibody, Clone 39B6 (SMC-154). Tissue: inflamed colon. Species: Mouse. Fixation: Formalin. Primary Antibody: Mouse Anti-Nitrotyrosine Monoclonal Antibody (SMC-154) at 1:1000000 for 12 hours at 4°C. Secondary Antibody: Biotin Goat Anti-Mouse at 1:2000 for 1 hour at RT. Counterstain: Mayer Hematoxylin (purple/blue) nuclear stain at 200 µl for 2 minutes at RT. Magnification: 40x.
Immunohistochemistry analysis using Mouse Anti-Nitrotyrosine Monoclonal Antibody, Clone 39B6 (SMC-154). Tissue: liver tissue . Species: Rat. Primary Antibody: Mouse Anti-Nitrotyrosine Monoclonal Antibody (SMC-154) at 1:1000. Secondary Antibody: FITC Goat Anti-Mouse (green).
Immunohistochemistry analysis using Mouse Anti-Nitrotyrosine Monoclonal Antibody, Clone 39B6 (SMC-154). Tissue: backskin. Species: Mouse. Fixation: Bouin’s Fixative and paraffin-embedded. Primary Antibody: Mouse Anti-Nitrotyrosine Monoclonal Antibody (SMC-154) at 1:100 for 1 hour at RT. Secondary Antibody: FITC Goat Anti-Mouse (green) at 1:50 for 1 hour at RT.
Immunohistochemistry analysis using Mouse Anti-Nitrotyrosine Monoclonal Antibody, Clone 39B6 (SMC-154). Tissue: colon carcinoma. Species: Human. Fixation: Formalin. Primary Antibody: Mouse Anti-Nitrotyrosine Monoclonal Antibody (SMC-154) at 1:25000 for 12 hours at 4°C. Secondary Antibody: Biotin Goat Anti-Mouse at 1:2000 for 1 hour at RT. Counterstain: Mayer Hematoxylin (purple/blue) nuclear stain at 200 µl for 2 minutes at RT. Magnification: 40x.
Product Citations (10)
Immunohistochemistry
Nuclear-translocated Glyceraldehyde-3-phosphate Dehydrogenase Promotes Poly (ADP-ribose) Polymerase-1 Activation during Oxidative/Nitrosative Stress in Stroke.
Nakajima, H. et al. (2015) J Biol Chem. 290(23):14493-503.
PubMed ID: 25882840 Reactivity Rat Applications: Immunohistochemistry
Improved angiogenesis and healing in crush syndrome by FGF-2+F/P NPs.
Takikawa, M. et al. (2015) J Surg Res. 196(2):247-57.
PubMed ID: 25864985 Reactivity Rat Applications: Immunohistochemistry
Dipeptidyl peptidase-4 deficiency protects against experimental diabetic nephropathy partly by blocking the advanced glycation end products-receptor axis.
Matsui, T. et al. (2015) Lab Invest. 95(5):525-33.
PubMed ID: 25730373 Reactivity Rat Applications: Immunohistochemistry
Improved survival rate by temperature control at compression sites in rat model of crush syndrome.
Nakayama, T. et al. (2014) J Surg Res. 188(1):250-9.
PubMed ID: 24679269 Reactivity Rat Applications: Immunohistochemistry
SIRT3 Is a Mitochondria-Localized Tumor Suppressor Required for Maintenance of Mitochondrial Integrity and Metabolism during Stress.
Kim. H. et al. (2010) Cancer Cell. 17 (1): 41-52.
PubMed ID: 20129246 Reactivity Mouse Applications: Immunohistochemistry
Flow Cytometry
Adipose tissue macrophages in non-rodent mammals: a comparative study.
Ampem, G. et al. (2015) Cell Tissue Res. 363(2):461-78.
PubMed ID: 26239911 Reactivity Cattle, goat, sheep, cat, dog, horse Applications: Flow Cytometry
Inducible nitric oxide synthase mediates MG132 lethality in leukemic cells through mitochondrial depolarization.
Chao, T.H., Chang, M.Y., Su S.J., Su, S.H. (2014) Free Radic Biol Med. 74:175-87.
PubMed ID: 24909615 Reactivity Human Applications: Flow Cytometry
Immunocytochemistry/Immunofluorescence
Inducible nitric oxide synthase mediates MG132 lethality in leukemic cells through mitochondrial depolarization.
Chao, T.H., Chang, M.Y., Su S.J., Su, S.H. (2014) Free Radic Biol Med. 74:175-87.
PubMed ID: 24909615 Reactivity Human Applications: Immunocytochemistry/Immunofluorescence
Aberrant production of extracellular matrix proteins and dysfunction in kidney endothelial cells with a short duration of diabetes.
Grutzmacher, C. et al. (2012) AJP Renal Physiol. 304 (1): F19-F30.
PubMed ID: 23077100 Reactivity Mouse Applications: Immunocytochemistry/Immunofluorescence
Other Citations
Peptide Microarrays for Real-Time Kinetic Profiling of Tyrosine Phosphatase Activity of Recombinant Phosphatases and Phosphatases in Lysates of Cells or Tissue Samples.
Hovestad-Bijl, L (2016) Methods Mol Biol. 1447:67-78.
PubMed ID: 27514800 Reactivity Mamalian Applications: Antibody Microarray
ATTO 390 | ||
Overview:
ATTO 390 Datasheet | Optical Properties: λex = 390 nm λem = 479 nm εmax = 2.4×104 Φf = 0.90 τfl = 5.0 ns Brightness = 21.6 Laser = 365 or 405 nm |