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SAB4200123

Sigma-Aldrich

Anti-SORBS3 antibody ,Mouse monoclonal

clone SORB132, purified from hybridoma cell culture

Synonym(s):

Anti-SCAM1, Anti-SH3D4, Anti-VINEXIN

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About This Item

UNSPSC Code:
12352203
NACRES:
NA.41

biological source

mouse

conjugate

unconjugated

antibody form

purified from hybridoma cell culture

antibody product type

primary antibodies

clone

SORB132, monoclonal

form

buffered aqueous solution

mol wt

antigen 37 kDa

species reactivity

monkey, human

packaging

antibody small pack of 25 μL

concentration

~1.0 mg/mL

technique(s)

western blot: 2-4 μg/mL using A431 total cell extracts

isotype

IgG1

UniProt accession no.

shipped in

dry ice

storage temp.

−20°C

target post-translational modification

unmodified

Gene Information

human ... SORBS3(10174)

General description

Monoclonal Anti-SORBS3 (mouse IgG1 isotype) is derived from the hybridoma SORB132 produced by the fusion of mouse myeloma cells and splenocytes from BALB/c mice immunized with a synthetic peptide. The gene for sorbin and SH3 domain containing 3 (SORBS3) protein, also known as vinexin is mapped to human chromosome 8p21.3. This protein belongs to a family of adaptor proteins. All the family members share a sorbin homology (SoHo) domain in the N-terminal region, which has been shown to bind the lipid raft-associated protein flotillin1. These proteins also contain three Src homology 3 (SH3) domains in the C-terminal region, which allows the binding of specific signaling and cytoskeletal molecules, including vinculin. There are three different isoforms of SORBS3 (α, β and γ) protein have been characterized. Isoform α and β contain three SH3 domains while the β isoform does not include the N-terminal SoHo domain. The γ isoform of vinexin has been characterized in mouse fetal gonads. It differs from the α isoform in a few amino acids that are missing from the N-terminal region. Vinexin β is ubiquitously expressed but vinexin α and γ show tissue specific expression.

Specificity

Monoclonal Anti-SORBS3 recognizes human and monkey SORBS3.

Application

Anti-SORBS3 antibody, Mouse monoclonal is suitable for immunoblotting.

Biochem/physiol Actions

Vinexin α and β participates in cell signaling and the cytoskeletal structure. The α isoform is known to induce actin stress fiber formation. Vinexin might enhance the activation of c-Jun N-terminal kinase/stress-activated protein kinase (JNK/SAPK) in response to epidermal growth factor (EGF) stimulation by using its third SH3 domain. The growth-factor-induced signal transductions are controlled by the vinexin-son of sevenless (SOS) interactions.

Physical form

Solution in 0.01M phosphate buffered saline pH 7.4, containing 15 mM sodium azide.

Storage and Stability

Store at –20 °C. For continuous use, store at 2–8 °C for up to one month. For extended storage, freeze at –20 °C in working aliquots. Repeated freezing and thawing, or storage in “frost-free” freezers, is not recommended. If slight turbidity occurs upon prolonged storage, clarify the solution by centrifugation before use. Working dilution samples should be discarded if not used within 12 hours.

Disclaimer

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.

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Storage Class

10 - Combustible liquids

flash_point_f

Not applicable

flash_point_c

Not applicable


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Next-generation sequencing methylation profiling of subjects with obesity identifies novel gene changes
Day SE, et al.
Clinical epigenetics, 8(1), 1-12 (2016)
A novel isoform of Vinexin, Vinexin $\gamma$, regulates Sox9 gene expression through activation of MAPK cascade in mouse fetal gonad
Matsuyama M, et al.
Genes Cells, 10(5), 421-434 (2005)
Vinexin, CAP/ponsin, ArgBP2: a novel adaptor protein family regulating cytoskeletal organization and signal transduction
Kioka N, et al.
Cell Structure and Function, 27(1), 1-7 (2002)

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