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GAPDH antibody (AA 136-335)

This anti-GAPDH antibody is a Rabbit Polyclonal antibody detecting GAPDH in WB, IHC, IF, ICC and FACS. Suitable for Human, Mouse, Rat, Chicken, Monkey and Zebrafish (Danio rerio). This Primary Antibody has been cited in 115+ publications.
Catalog No. ABIN5518757

Quick Overview for GAPDH antibody (AA 136-335) (ABIN5518757)

Target

See all GAPDH Antibodies
GAPDH (Glyceraldehyde-3-Phosphate Dehydrogenase (GAPDH))

Reactivity

  • 240
  • 153
  • 133
  • 64
  • 49
  • 40
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  • 1
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  • 1
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Human, Mouse, Rat, Chicken, Monkey, Zebrafish (Danio rerio)

Host

  • 178
  • 106
  • 16
  • 9
  • 4
Rabbit

Clonality

  • 192
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Polyclonal

Conjugate

  • 192
  • 31
  • 18
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  • 3
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  • 1
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This GAPDH antibody is un-conjugated

Application

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Western Blotting (WB), Immunohistochemistry (IHC), Immunofluorescence (IF), Immunocytochemistry (ICC), Flow Cytometry (FACS)
  • Binding Specificity

    • 35
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    • 3
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    AA 136-335

    Purpose

    Anti-GAPDH Antibody Picoband®

    Cross-Reactivity (Details)

    No cross-reactivity with other proteins

    Characteristics

    Anti-GAPDH Antibody Picoband® (ABIN5518757). Tested in Flow Cytometry, IF, IHC, ICC, WB applications. This antibody reacts with Human, Mouse, Rat, Monkey, Chicken, Zebrafish. The brand Picoband indicates this is a premium antibody that guarantees superior quality, high affinity, and strong signals with minimal background in Western blot applications. Only our best-performing antibodies are designated as Picoband, ensuring unmatched performance.

    Purification

    Immunogen affinity purified.

    Immunogen

    E.coli-derived human GAPDH recombinant protein (Position: N136-E335). Human GAPDH shares 95% and 94.5% amino acid (aa) sequence identity with mouse and rat GAPDH, respectively.

    Isotype

    IgG
  • Application Notes

    Western blot, 0.1-0.5 μg/mL, Human, Monkey, Mouse, Rat, Chicken, Zebrafish
    Immunohistochemistry (Paraffin-embedded Section), 2-5 μg/mL, Human
    Immunocytochemistry/Immunofluorescence, 5 μg/mL, Human
    Flow Cytometry(Fixed), 1-3 μg/1x106 cells, Human
    1. Bae, B.-I., Hara, M. R., Cascio, M. B., Wellington, C. L., Hayden, M. R., Ross, C. A., Ha, H. C., Li, X.-J., Snyder, S. H., Sawa, A. Mutant Huntingtin: nuclear translocation and cytotoxicity mediated by GAPDH. Proc. Nat. Acad. Sci. 103: 3405-3409, 2006. 2. Colell, A., Ricci, J.-E., Tait, S., Milasta, S., Maurer, U., Bouchier-Hayes, L., Fitzgerald, P., Guio-Carrion, A., Waterhouse, N. J., Li, C. W., Mari, B., Barbry, P., Newmeyer, D. D., Beere, H. M., Green, D. R. GAPDH and autophagy preserve survival after apoptotic cytochrome c release in the absence of caspase activation. Cell 129: 983-997, 2007. Note: Erratum: Cell 130: 385 only, 2007. 3. Tarze A, Deniaud A, Le Bras M, Maillier E, Molle D, Larochette N, Zamzami N, Jan G, Kroemer G, Brenner C (April 2007). "GAPDH, a novel regulator of the pro-apoptotic mitochondrial membrane permeabilization".Oncogene 26 (18): 2606-20.

    Comment

    Antibody can be supported by chemiluminescence kit ABIN921124 in WB, supported by ABIN921231 in IHC(P).

    Restrictions

    For Research Use only
  • Format

    Lyophilized

    Reconstitution

    Add 0.2 mL of distilled water will yield a concentration of 500 μg/mL.

    Concentration

    500 μg/mL

    Buffer

    Each vial contains 4 mg Trehalose, 0.9 mg NaCl and 0.2 mg Na2HPO4.

    Storage

    4 °C,-20 °C

    Storage Comment

    Store at -20°C for one year from date of receipt. After reconstitution, at 4°C for one month.
    It can also be aliquotted and stored frozen at -20°C for six months. Avoid repeated freeze-thaw cycles.
  • Wang, Xue, Zhang, Bu, Zhu, Lai: "Autophagy protects ovarian cancer-associated fibroblasts against oxidative stress." in: Cell cycle (Georgetown, Tex.), Vol. 15, Issue 10, pp. 1376-85, (2018) (PubMed).

    Duan, Man, Tang, Yao, Tao, Yu, Liang, Makawana, Zou, Wang, Zhu: "Design, Synthesis and Antitumor Activity of Novel link-bridge and B-Ring Modified Combretastatin A-4 (CA-4) Analogues as Potent Antitubulin Agents." in: Scientific reports, Vol. 6, pp. 25387, (2018) (PubMed).

    Liu, Kuang, Wu, Jin, Sun: "A novel polysaccharide from Sargassum integerrimum induces apoptosis in A549 cells and prevents angiogensis in vitro and in vivo." in: Scientific reports, Vol. 6, pp. 26722, (2018) (PubMed).

    Zou, Duan, Wang, Gao, Chen, Ou, Liang, Wang, Yuan, Wang, Zhu: "DYT-40, a novel synthetic 2-styryl-5-nitroimidazole derivative, blocks malignant glioblastoma growth and invasion by inhibiting AEG-1 and NF-κB signaling pathways." in: Scientific reports, Vol. 6, pp. 27331, (2018) (PubMed).

    Guo, Li, Qian, Bi, He, Jin, Luo, Li, Meng, Li: "TGEV infection up-regulates FcRn expression via activation of NF-κB signaling." in: Scientific reports, Vol. 6, pp. 32154, (2018) (PubMed).

    Li, Chen, Xiao, Li, Wang, Su, Guo, Liu, Yan, Yang, Zhang, Bu: "Mouse Sirt3 promotes autophagy in AngII-induced myocardial hypertrophy through the deacetylation of FoxO1." in: Oncotarget, Vol. 7, Issue 52, pp. 86648-86659, (2018) (PubMed).

    Feng, Zhang, Zhou, Zhou, Li, Guo, Feng, Ma, Huang, Huang: "mir-218-2 promotes glioblastomas growth, invasion and drug resistance by targeting CDC27." in: Oncotarget, Vol. 8, Issue 4, pp. 6304-6318, (2018) (PubMed).

    Li, Guan, Liu, Zhao, Li, Zhang, Tan, Mi, Li: "Epoxyeicosanoids prevent intervertebral disc degeneration in vitro and in vivo." in: Oncotarget, Vol. 8, Issue 3, pp. 3781-3797, (2018) (PubMed).

    Hu, Cao, Pang, Luo, Zou, Feng, Li, Chen, Huang: "Tumor grade related expression of neuroglobin is negatively regulated by PPARγ and confers antioxidant activity in glioma progression." in: Redox biology, Vol. 12, pp. 682-689, (2018) (PubMed).

    Liao, Xing, Xu, Liu, Zhang: "Evaluation of the circulating level of fibroblast activation protein α for diagnosis of esophageal squamous cell carcinoma." in: Oncotarget, Vol. 8, Issue 18, pp. 30050-30062, (2018) (PubMed).

    Cai, Tan, Li, Gao, Li, Li, Tang, Li, Hui: "Glucagon-Like Peptide-1 (GLP-1) Treatment Ameliorates Cognitive Impairment by Attenuating Arc Expression in Type 2 Diabetic Rats." in: Medical science monitor : international medical journal of experimental and clinical research, Vol. 23, pp. 4334-4342, (2018) (PubMed).

    Wu, Sun, Ye, Zhang, Guo, Huang, Jing, Xiang, Yu, Guo: "Iguratimod prevents ovariectomy‑induced bone loss and suppresses osteoclastogenesis via inhibition of peroxisome proliferator‑activated receptor‑γ." in: Molecular medicine reports, Vol. 16, Issue 6, pp. 8200-8208, (2018) (PubMed).

    Liu, Liu, Tan, Tang, Long, Li, Liang, Chu, Yang: "Gaseous signalling molecule SO2 via Hippo‑MST pathway to improve myocardial fibrosis of diabetic rats." in: Molecular medicine reports, Vol. 16, Issue 6, pp. 8953-8963, (2018) (PubMed).

    Wu, Xing, Zhang, Mao, Chen, Liang, Wang, Ren, Cui, Jiang, Wang, Zou, Ji: "Autophagy promotes fibrosis and apoptosis in the peritoneum during long-term peritoneal dialysis." in: Journal of cellular and molecular medicine, Vol. 22, Issue 2, pp. 1190-1201, (2018) (PubMed).

    Gu, Fang, Kang, Hu, Yu, Li, Cheng, Gao: "Effect of ALDH2 on High Glucose-Induced Cardiac Fibroblast Oxidative Stress, Apoptosis, and Fibrosis." in: Oxidative medicine and cellular longevity, Vol. 2017, pp. 9257967, (2018) (PubMed).

    Li, Wang, Qin, Fan, Tian, Liu: "Fingolimod suppresses neuronal autophagy through the mTOR/p70S6K pathway and alleviates ischemic brain damage in mice." in: PLoS ONE, Vol. 12, Issue 11, pp. e0188748, (2018) (PubMed).

    Zou, Zhang, Yuan, Yang, Wu, Song, Zhu, Mao, Chen: "Endogenous hormone 2-methoxyestradiol suppresses venous hypertension-induced angiogenesis through up- and down-regulating p53 and id-1." in: Journal of cellular and molecular medicine, Vol. 22, Issue 2, pp. 957-967, (2018) (PubMed).

    Huang, Pan, Mao, Zhang, Ma, Xi, You: "Sinapic Acid Inhibits the IL-1β-Induced Inflammation via MAPK Downregulation in Rat Chondrocytes." in: Inflammation, Vol. 41, Issue 2, pp. 562-568, (2018) (PubMed).

    Miao, Margolis, Gao, Voss, Li, Martini, Norton, Bossé, Wankowicz, Cullen, Horak, Wind-Rotolo, Tracy, Giannakis, Hodi, Drake, Ball, Allaf, Snyder, Hellmann, Ho, Motzer, Signoretti, Kaelin, Choueiri et al.: "Genomic correlates of response to immune checkpoint therapies in clear cell renal cell carcinoma. ..." in: Science (New York, N.Y.), Vol. 359, Issue 6377, pp. 801-806, (2018) (PubMed).

    Yang, Zhang, Li, Wen: "MALAT1 enhanced the proliferation of human osteoblasts treated with ultra‑high molecular weight polyethylene by targeting VEGF via miR‑22‑5p." in: International journal of molecular medicine, Vol. 41, Issue 3, pp. 1536-1546, (2018) (PubMed).

  • Target

    GAPDH (Glyceraldehyde-3-Phosphate Dehydrogenase (GAPDH))

    Alternative Name

    GAPDH

    Background

    Synonyms: Glyceraldehyde-3-phosphate dehydrogenase,GAPDH,1.2.1.12,Peptidyl-cysteine S-nitrosylase GAPDH,2.6.99.-,GAPDH,GAPD,CDABP0047, OK/SW-cl.12,

    Tissue Specificity: Highly expressed in metastatic colon tumors. Expressed in primary colon tumors. Weakly expressed in normal colon tissue.

    Background: Glyceraldehyde 3-phosphate dehydrogenase (abbreviated as GAPDH or less commonly as G3PDH) is an enzyme of ~37 kDa that catalyzes the sixth step of glycolysis and thus serves to break down glucose for energy and carbon molecules. This gene encodes a member of the glyceraldehyde-3-phosphate dehydrogenase protein family. GAPDH is mapped to 12p13.31. The encoded protein has been identified as a moonlighting protein based on its ability to perform mechanistically distinct functions. The product of this gene catalyzes an important energy-yielding step in carbohydrate metabolism, the reversible oxidative phosphorylation of glyceraldehyde-3-phosphate in the presence of inorganic phosphate and nicotinamide adenine dinucleotide (NAD). The encoded protein has additionally been identified to have uracil DNA glycosylase activity in the nucleus.

    Molecular Weight

    36 kDa

    Gene ID

    2597

    UniProt

    P04406
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