Anti Active Rap1 Mouse Monoclonal Antibody - USA
price: contact company for price
Catalog Number: 26912
Gene Symbol: RAP1
Description: Anti-Active Rap1 Mouse Monoclonal Antibody
Background: Small GTPases are a super-family of cellular signaling regulators.
Rap family members (Rap1A, Rap1B, Rap2A, Rap2B, and Rap2C) are Ras-like GTPases that regulate cell proliferation, differentiation, apoptosis and adhesion mechanisms.
Rap1 (Ras-proximate-1) regulates apoptosis through interaction with two MAP3K effectors of the MEK/ERK MAP-kinase pathway, Raf-1 and B-Raf.
Rap1 regulates cell adhesion mechanisms through effector molecules such as the integrins and cadherins.
Immunogen: Recombinant full length protein of active Rap1.
Applications: IP, IHC
Recommended Dilutions: 1 μg for 1~2 mg total cellular proteins for IP
1: 100 dilution for IHC
Concentration: 1 mg/ml
Host: mouse
Format: Liquid
Clonality: Monoclonal
Isotype: IgG
Purity: Purified from ascites
Storage buffer:
Preservative: no
Constituents: PBS (without Mg2+ and Ca2+), pH 7.4, 150 mM NaCl, 50% glycerol
Species Reactivity: Anti-active Rap1 antibody recognizes active Rap1 of vertebrates.
Storage Conditions: Store at -20°C.
Avoid freeze / thaw cycles
Company Contact:
- Posted By: NewEast Biosciences
- Phone: 6109452007
- Address: 24 Whitewoods Lane, Malvern , PA , USA
- Email:
- Website: http://www.neweastbio.com
Published date: June 6, 2013
- Business Description: NewEast Biosciences are specialized in generating protein configuration specific monoclonal antibodies that recognize active (GTP bound) G proteins (including Ras superfamily small GTPases and heterotrimeric G proteins).
These unique antibodies do not recognize the inactive (GDP bound) G proteins.
These monoclonal antibodies have been successfully used to immunoprecipitate active G proteins from cell lysates, and for immunohistochemical staining of active G proteins in cultured cells or in tissue sections.
Hence, these antibodies can be used to study the spatial and temporal dynamics of cellular signaling involving big and small G proteins, the future direction of signal transduction studies.
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