Mouse gp130 Antibody Summary
Gln23-Glu617 (predicted)
Accession # Q6PDI9
Applications
Please Note: Optimal dilutions should be determined by each laboratory for each application. General Protocols are available in the Technical Information section on our website.
Scientific Data
Detection of gp130 in Mouse Splenocytes by Flow Cytometry. Mouse splenocytes were stained with Rat Anti-Mouse CD3 PE-conjugated Monoclonal Antibody (Catalog # FAB4841P) and either (A) Rat Anti-Mouse gp130 Monoclonal Antibody (Catalog # MAB4681) or (B) Rat IgG2AIsotype Control (Catalog # MAB006) followed by Allophycocyanin-conjugated Anti-Rat IgG Secondary Antibody (Catalog # F0113). View our protocol for Staining Membrane-associated Proteins.
gp130 in M1 Mouse Cell Line. gp130 was detected in immersion fixed M1 mouse myeloid leukemia cell line using Rat Anti-Mouse gp130 Monoclonal Antibody (Catalog # MAB4681) at 10 µg/mL for 3 hours at room temperature. Cells were stained using the NorthernLights™ 557-conjugated Anti-Rat IgG Secondary Antibody (red; Catalog # NL013)and counter-stained with DAPI (blue). View our protocol for Fluorescent ICC Staining of Non-adherent Cells.
Detection of Mouse gp130/CD130 by Immunohistochemistry IL-6 deficiency leads to decreased gp130 protein in the retina. (A) Fold difference of Gp130 mRNA in the IL-6−/− retina normalized to WT Gp130 mRNA (dotted line) via the delta delta Ct method. (B) Densitometry analysis (right) of gp130 and beta -actin immunoblotting (left) in WT (white) and IL-6−/− (gray) retina.; student’s t-test. Error bars indicates STDEV. (C–D) Whole mount (C) and sagittal cross sections (D) of WT (left) and IL-6−/− (right) retina reveal co-localization (arrowheads; C and arrows; D) of gp130 immunolabeling (green) with beta -Tubulin+ RGCs. Error bars represent standard deviation and asterisks indicate p<0.05 (A,B). Scale bars = 20 μm (C,D). Image collected and cropped by CiteAb from the following publication (https://pubmed.ncbi.nlm.nih.gov/27747134), licensed under a CC-BY license. Not internally tested by R&D Systems.
Reconstitution Calculator
Preparation and Storage
- 12 months from date of receipt, -20 to -70 °C as supplied.
- 1 month, 2 to 8 °C under sterile conditions after reconstitution.
- 6 months, -20 to -70 °C under sterile conditions after reconstitution.
Background: gp130
Gp130, the common signal transducing receptor component shared by the functional receptor complexes of the IL-6 family of cytokines, belongs to the class I cytokine receptor family. Binding of IL-6 (IL-11) to either the membrane-anchored or soluble IL-6 R (IL-11 R) initiates the association of IL-6 R (IL-11 R) with gp130 which then undergoes homo-dimerization and signal transduction. With other IL-6 family cytokines, such as LIF and OSM, signal transduction is triggered by the hetero-dimerization of gp130 and LIF R or OSM R.
Gp130 is expressed in all organs examined. Soluble gp130, which apparently arises either from proteolytic cleavage of the membrane-bound receptor or from alternative splicing, has been detected in human serum. The in vivo functions of soluble gp130 are not clearly understood. In in vitro experiments, natural or recombinant soluble gp130 has been shown to have inhibitory effects on OSM and CNTF activities.
- Narazaki, M. et al. (1993) Blood 82:1120.
- Taga, T. and T. Kishimoto (1997) Annu. Rev. Immunol. 15:797.
Product Datasheets
Citations for Mouse gp130 Antibody
R&D Systems personnel manually curate a database that contains references using R&D Systems products. The data collected includes not only links to publications in PubMed, but also provides information about sample types, species, and experimental conditions.
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Stressor-dependent Alterations in Glycoprotein 130: Implications for Glial Cell Reactivity, Cytokine Signaling and Ganglion Cell Health in Glaucoma
Authors: FD Echevarria, CC Walker, SK Abella, M Won, RM Sappington
J Clin Exp Ophthalmol
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Granulocytes Are Unresponsive to IL-6 Due to an Absence of gp130
Authors: AN Wilkinson, KH Gartlan, G Kelly, LD Samson, SD Olver, J Avery, N Zomerdijk, SK Tey, JS Lee, S Vuckovic, GR Hill
J. Immunol., 2018-04-06;0(0):.
Species: Mouse
Sample Types: Whole Cells
Applications: Flow Cytometry -
Epstein-Barr virus-induced gene 3 (EBI3) can mediate IL-6 trans-signaling
Authors: S Chehboun, J Labrecque-, S Pasquin, Y Meliani, B Meddah, W Ferlin, M Sharma, A Tormo, JF Masson, JF Gauchat
J. Biol. Chem, 2017-03-09;0(0):.
Species: Mouse
Sample Types: Whole Cells
Applications: Neutralization -
Dendritic cell MST1 inhibits Th17 differentiation
Authors: C Li, Y Bi, Y Li, H Yang, Q Yu, J Wang, Y Wang, H Su, A Jia, Y Hu, L Han, J Zhang, S Li, W Tao, G Liu
Nat Commun, 2017-02-01;8(0):14275.
Species: Mouse
Sample Types: Whole Cells
Applications: Flow Cytometry -
Oncostatin M acting via OSMR, augments the actions of IL-1 and TNF in synovial fibroblasts.
Authors: Le Goff B, Singbrant S, Tonkin B, Martin T, Romas E, Sims N, Walsh N
Cytokine, 2014-04-22;68(2):101-9.
Species: Mouse
Sample Types: Whole Tissue
Applications: IHC-P -
Ifitm3 limits the severity of acute influenza in mice.
Authors: Bailey, Charles, Huang, I-Chueh, Kam, Christin, Farzan, Michael
PLoS Pathog, 2012-09-06;8(9):e1002909.
Species: Mouse
Sample Types: Whole Cells
Applications: Flow Cytometry -
Essential roles of IL-6 trans-signaling in colonic epithelial cells, induced by the IL-6/soluble-IL-6 receptor derived from lamina propria macrophages, on the development of colitis-associated premalignant cancer in a murine model.
Authors: Matsumoto S, Hara T, Mitsuyama K, Yamamoto M, Tsuruta O, Sata M, Scheller J, Rose-John S, Kado S, Takada T
J. Immunol., 2009-12-30;184(3):1543-51.
Species: Mouse
Sample Types: Whole Tissue
Applications: IHC-Fr -
TH and NPY in sympathetic neurovascular cultures: role of LIF and NT-3.
Am. J. Physiol., Cell Physiol., 2007-11-21;294(1):C306-12.
Species: Rat
Sample Types: Cell Lysates, Whole Cells
Applications: ICC, Western Blot -
Interleukin-6: A Constitutive Modulator of Glycoprotein 130, Neuroinflammatory and Cell Survival Signaling in Retina
Authors: Franklin D. Echevarria, Abigayle E. Rickman, Rebecca M. Sappington
Journal of Clinical & Cellular Immunology
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Leukemia Inhibitory Factor Represses GnRH Gene Expression via cFOS during Inflammation in Male Mice
Authors: Nancy M. Lainez, Djurdjica Coss
Neuroendocrinology
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