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Anti-CAP (c-Cbl associated protein) Antibody detects level of CAP (c-Cbl associated protein) & has been published & validated for use in WB.
More>>Anti-CAP (c-Cbl associated protein) Antibody detects level of CAP (c-Cbl associated protein) & has been published & validated for use in WB. Less<<
Anti-CAP (c-Cbl associated protein) Antibody: SDB (Sicherheitsdatenblätter), Analysenzertifikate und Qualitätszertifikate, Dossiers, Broschüren und andere verfügbare Dokumente.
0.1M Tris-glycine, pH 7.4, 0.15M NaCl, 0.05% sodium azide before the addition of glycerol to 30%
Applications
Application
Anti-CAP (c-Cbl associated protein) Antibody detects level of CAP (c-Cbl associated protein) & has been published & validated for use in WB.
Key Applications
Western Blotting
Biological Information
Immunogen
KLH-conjugated, synthetic peptide corresponding to amino acids 192-206 (CEKRAKDDSRRVVKST) of human CAP (c-Cbl associated protein), also known as ponsin
Host
Rabbit
Specificity
CAP and two other isoforms or alternatively spliced variants at 125 and 53kDa; other splice variants that may be detected are at 75kDa and 45kDa
FUNCTION: SwissProt: Q9BX66 # Plays a role in tyrosine phosphorylation of CBL by linking CBL to the insulin receptor. Required for insulin- stimulated glucose transport. Involved in formation of actin stress fibers and focal adhesions (By similarity). SIZE: 1292 amino acids; 142455 Da SUBUNIT: Interacts with the long isoform of MLLT4/afadin and with VCL. MLLT4 and VCL bind to SORBS1 in a competitive manner and do not form a ternary complex. Interacts with ABL1, CBL, CBLB and INPPL1/SHIP2 through the third SH3 domain. Interaction with ABL1 occurs only after insulin stimulation while this has no effect on the interaction with INPPL1. Interacts with the insulin receptor but dissociates from it following insulin stimulation. Also interacts with SCA7, PTK2/p125FAK and flotillin. SUBCELLULAR LOCATION: Cell junction, adherens junction. Cell membrane. Cytoplasm, cytoskeleton. Note=Colocalizes with actin stress fibers. Also detected at the plasma membrane and in neuronal intranuclear inclusions.TISSUE SPECIFICITY: Widely expressed with highest levels in heart and skeletal muscle. PTM: O-glycosylated (By similarity). SIMILARITY: SwissProt: Q9BX66 ## Contains 3 SH3 domains. & Contains 1 SoHo domain.
Molecular Weight
99kDa
Physicochemical Information
Dimensions
Materials Information
Toxicological Information
Safety Information according to GHS
Safety Information
Product Usage Statements
Quality Assurance
routinely evaluated by immunoblot on a RIPA lysate prepared from a 3T3-L1 adipocytes
Usage Statement
Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.
A novel, multifuntional c-Cbl binding protein in insulin receptor signaling in 3T3-L1 adipocytes. Ribon, V, et al. Mol. Cell. Biol., 18: 872-9 (1998)
1998
The protein product of the c-Cbl proto-oncogene is prominently tyrosine phosphorylated in response to insulin in 3T3-L1 adipocytes and not in 3T3-L1 fibroblasts. After insulin-dependent tyrosine phosphorylation, c-Cbl specifically associates with endogenous c-Crk and Fyn. These results suggest a role for tyrosine-phosphorylated c-Cbl in 3T3-L1 adipocyte activation by insulin. A yeast two-hybrid cDNA library prepared from fully differentiated 3T3-L1 adipocytes was screened with full-length c-Cbl as the target protein in an attempt to identify adipose-specific signaling proteins that interact with c-Cbl and potentially are involved in its tyrosine phosphorylation in 3T3-L1 adipocytes. Here we describe the isolation and the characterization of a novel protein that we termed CAP for c-Cbl-associated protein. CAP contains a unique structure with three adjacent Src homology 3 (SH3) domains in the C terminus and a region showing significant sequence similarity with the peptide hormone sorbin. Both CAP mRNA and proteins are expressed predominately in 3T3-L1 adipocytes and not in 3T3-L1 fibroblasts. CAP associates with c-Cbl in 3T3-L1 adipocytes independently of insulin stimulation in vivo and in vitro in an SH3-domain-mediated manner. Furthermore, we detected the association of CAP with the insulin receptor. Insulin stimulation resulted in the dissociation of CAP from the insulin receptor. Taken together, these data suggest that CAP represents a novel c-Cbl binding protein in 3T3-L1 adipocytes likely to participate in insulin signaling.
A role for CAP, a novel, multifunctional Src homology 3 domain-containing protein in formation of actin stress fibers and focal adhesions. Ribon, V, et al. J. Biol. Chem., 273: 4073-80 (1998)
1998
c-Cbl-associated protein, CAP, was originally cloned from a 3T3-L1 adipocyte cDNA expression library using full-length c-Cbl as a bait. CAP contains a unique structure, with three adjacent Src homology-3 (SH3) domains in the COOH terminus and a region sharing significant sequence similarity with the peptide hormone sorbin. Expression of CAP in NIH-3T3 cells overexpressing the insulin receptor induced the formation of stress fibers and focal adhesions. This effect of CAP expression on the organization of the actin-based cytoskeleton was independent of the type of integrin receptors engaged with extracellular matrix, whereas membrane ruffling and decreased actin stress fibers induced by insulin were not affected by expression of CAP. Immunofluorescence microscopy demonstrated that CAP colocalized with actin stress fibers. Moreover, CAP interacted with the focal adhesion kinase, p125FAK, both in vitro and in vivo through one of the SH3 domains of CAP. The increased formation of stress fibers and focal adhesions in CAP-expressing cells was correlated with decreased tyrosine phosphorylation of p125FAK in growing cells or upon integrin-mediated cell adhesion. These results suggest that CAP may mediate signals for the formation of stress fibers and focal adhesions.