Human Gas6 Biotinylated Antibody Summary
Asp118-Ala678
Accession # NP_000811
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 Human Gas6 by Flow Cytometry Inflammatory stimuli associated with viral infections upregulate Axl and promote Gas6 binding to macrophages. (A–E) MDMs were stimulated for 24 h with dexamethasone (Dex), LPS, IFN‐ gamma, poly(I:C) or IFN‐ alpha. (A) MerTK and (C) Axl protein expression determined by ELISA of total cell lysates (mean+SEM, n = 4). (B) MerTK and (D) Axl protein expression analyzed by western blotting; actin was used as loading control. A representative of two to three independent experiments is shown. (E) Flow cytometric analysis of Axl expression on MDMs stimulated with poly(I:C) or IFN‐ alpha for 24 h. Representative histograms of two independent experiments are shown; dotted line/shaded: FMO control. (F) Axl and MerTK relative mRNA and (G) protein expression in MDMs differentiated by 6‐day culture in M‐CSF or GM‐CSF determined by qPCR (mean+SEM, n = 6) and by ELISA of total cell lysates (mean+SEM, n = 3), respectively. (H) Axl, MerTK and Tyro3 relative mRNA expression in MDMs stimulated as in (A–C) analyzed by qPCR (mean+SEM, n = 2–3). (I and J) Flow cytometric analysis of Gas6 binding to MDMs stimulated with poly(I:C) for 24 h. (I) Representative of four independent experiments is shown; dotted line/shaded: isotype control. (J) Ratio of Gas6 to isotype control geometric mean fluorescence intensity (MFI)+SEM in unstimulated and poly(I:C)‐stimulated MDMs (n = 4). *p < 0.01, paired t‐test. ELISA and qPCR samples were assayed in duplicate. Image collected and cropped by CiteAb from the following publication (https://pubmed.ncbi.nlm.nih.gov/29400409), 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: Gas6
Gas6 (Growth Arrest Specific 6) is a multimodular protein that is upregulated by a wide variety of cell types in response to growth arrest (1). Gas6 and the structurally related Protein S are vitamin K-dependent and have an extensively gamma -carboxylated N-terminal Gla domain, four EGF-like repeats, and a C-terminal region with homology to steroid hormone binding globulin (SHBG) (2). Human Gas6 is a 75 kDa protein that shares 77-79% amino acid (aa) sequence identity with mouse and rat Gas6 and 43% aa sequence identity with human protein S (over the region expressed). Alternate splicing generates isoforms that lack the Gla domain and/or the spacer between the EGF-like and SHBG regions. Gas6 binds and induces signaling through the receptor tyrosine kinases Axl, Dtk, and Mer (3-5). Human Gas6 interacts with both mouse and rat orthologs of these receptors (1). The full length isoform may be cleaved, resulting in release of the free SHBG region which can independently activate Axl (6). Shed soluble forms of Axl and Mer bind Gas6 and function as decoy receptors (7, 8). Gas6 induces a variety of responses, including prevention of apoptosis (9), cell proliferation (10), platelet-mediated thrombosis (11), retinal epithelial cell phagocytosis of outer rod segments (12), inhibition of VEGF‑induced endothelial cell chemotaxis (13), and the differentiation and expansion of NK cell precursors (14). The affinity of Gas6 for phosphatidylserine likely contributes to its role in promoting the phagocytosis of apoptotic cells (15). Several of these effects have been shown to require gamma -carboxylation of the Gla domain (12, 16).
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- Stitt, T.N. et al. (1995) Cell 80:661.
- Ohashi, K. et al. (1995) J. Biol. Chem. 270:22681.
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- Goruppi, S. et al. (1997) FEBS Lett. 415:59.
- Sather, S. et al. (2007) Blood 109:1026.
- Budagian, V. et al. (2005) Mol. Cell. Biol. 25:9324.
- Shankar, S.L. et al. (2006) J. Neurosci. 26:5638.
- Yanagita, M. et al. (2002) J. Clin. Invest. 110:239.
- Gould, W.R. et al. (2005) J. Thromb. Haemost. 3:733.
- Hall, M.O. et al. (2002) Exp. Eye Res. 75:391.
- Gallicchio, M. et al. (2005) Blood 105:1970.
- Caraux, A. et al. (2006) Nat. Immunol. 7:747.
- Wu, Y. et al. (2005) J. Cell Sci. 118:539.
- Hasanbasic, I. et al. (2005) J. Thromb. Haemost. 3:2790.
Product Datasheets
Citations for Human Gas6 Biotinylated 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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Citations: Showing 1 - 10
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GAS6/AXL Inhibition Enhances Ovarian Cancer Sensitivity to Chemotherapy and PARP Inhibition through Increased DNA Damage and Enhanced Replication Stress
Authors: Mary M. Mullen, Elena Lomonosova, Michael D. Toboni, Alyssa Oplt, Emily Cybulla, Barbara Blachut et al.
Molecular Cancer Research
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Role of Gas6 and TAM Receptors in the Identification of Cardiopulmonary Involvement in Systemic Sclerosis and Scleroderma Spectrum Disorders
Authors: M Bellan, A Dimagli, C Piccinino, A Giubertoni, A Ianniello, F Grimoldi, M Sguazzotti, A Nerviani, M Barini, A Carriero, C Smirne, ME Burlone, C Rigamonti, R Minisini, L Salmi, MN Barbaglia, LM Castello, D Sola, P Marino, GC Avanzi, M Pirisi, PP Sainaghi
Dis. Markers, 2020-05-12;2020(0):2696173.
Species: Human
Sample Types: Plasma
Applications: ELISA (detection) -
A high Gas6 level in plasma predicts venous thromboembolism recurrence, major bleeding and mortality in the elderly: a prospective multicenter cohort study
Authors: Annatina Schnegg‐Kaufmann, Sara Calzavarini, Andreas Limacher, Marie Mean, Marc Righini, Daniel Staub et al.
Journal of Thrombosis and Haemostasis
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Study of Early Elevated Gas6 Plasma Level as a Predictor of Mortality in a Prospective Cohort of Patients with Sepsis
Authors: Grégoire Stalder, Yok Ai Que, Sara Calzavarini, Laurent Burnier, Christophe Kosinski, Pierluigi Ballabeni et al.
PLOS ONE
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An engineered Axl 'decoy receptor' effectively silences the Gas6-Axl signaling axis
Authors: Mihalis S. Kariolis, Yu Rebecca Miao, Douglas S. Jones, Shiven Kapur, Irimpan I. Mathews, Amato J. Giaccia et al.
Nature Chemical Biology
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IL-17 stimulates differentiation of human anti-inflammatory macrophages and phagocytosis of apoptotic neutrophils in response to IL-10 and glucocorticoids.
Authors: Zizzo G, Cohen P
J Immunol, 2013-04-17;190(10):5237-46.
Species: Human
Sample Types: Cell Culture Supernates
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Efficient clearance of early apoptotic cells by human macrophages requires M2c polarization and MerTK induction.
Authors: Zizzo G, Hilliard B, Monestier M, Cohen P
J Immunol, 2012-08-31;189(7):3508-20.
Species: Human
Sample Types: Cell Culture Supernates
Applications: ELISA Development -
Plasma protein growth arrest-specific 6 levels are associated with altered glucose tolerance, inflammation, and endothelial dysfunction.
Authors: Hung YJ, Lee CH, Chu NF
Diabetes Care, 2010-05-26;33(8):1840-4.
Species: Human
Sample Types: Plasma
Applications: ELISA Development -
Gas6 evaluation in patients with acute dyspnea due to suspected pulmonary embolism.
Authors: Sainaghi PP, Alciato F, Carnieletto S, Castello L, Bergamasco L, Sola D, Bongo AS, Inglese E, Polosa R, Avanzi GC
Respir Med, 2008-11-25;103(4):589-94.
Species: Human
Sample Types: Plasma
Applications: ELISA Development -
Development of a novel immunoassay for the assessment of plasma Gas6 concentrations and their variation with hormonal status.
Authors: Clauser S, Peyrard S, Gaussem P, Crespin M, Emmerich J, Aiach M, Borgel D
Clin. Chem., 2007-08-23;53(10):1808-13.
Species: Human
Sample Types: Plasma
Applications: ELISA Development
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