YWHAB-Polyclonal Antibodies

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YWHAB

Qty


Total
$220
Catalog #
A1023
Antibody Type
Polyclonal Antibody
Gene ID
7529
Swiss Prot
P31946
Size
Species
Rabbit
Isotype
IgG
Purity
Affinity purification
Additional Information
ReactivityHuman Mouse Rat
Tested applicationsWB IHC IF
Recommended DilutionWB 1:500 - 1:2000 IHC 1:50 - 1:200 IF 1:50 - 1:200
Calculated MW28kDa
Observed MWRefer to Figures
ImmunogenRecombinant protein of human YWHAB
Storage BufferStore at -20℃. Avoid freeze / thaw cycles. Buffer: PBS with 0.02% sodium azide, 50% glycerol, pH7.3.
Concentrationfnq
SynonymYWHAB;GW128;HS1;KCIP-1 ;14-3-3;
Images
  • A1023: image 1

    Western blot analysis of extracts of various cell lines, using YWHAB antibody.

  • A1023: image 2

    Immunohistochemistry of paraffin-embedded rat liver using YWHAB antibody at dilution of 1:100 (x400 lens).

  • A1023: image 3

    Immunofluorescence analysis of HeLa cell using YWHAB antibody.

Background

The 14-3-3 family of proteins plays a key regulatory role in signal transduction, checkpoint control, apoptotic and nutrient-sensing pathways (1,2). 14-3-3 proteins are highly conserved and ubiquitously expressed. There are at least seven isoforms, β, γ, ε, σ, ζ, τ, and η that have been identified in mammals. The initially described α and δ isoforms are confirmed to be phosphorylated forms of β and ζ, respectively (3). Through their amino-terminal α helical region, 14-3-3 proteins form homo- or heterodimers that interact with a wide variety of proteins: transcription factors, metabolic enzymes, cytoskeletal proteins, kinases, phosphatases, and other signaling molecules (3,4). The interaction of 14-3-3 proteins with their targets is primarily through a phospho-Ser/Thr motif. However, binding to divergent phospho-Ser/Thr motifs, as well as phosphorylation-independent interactions, has been observed (4). 14-3-3 binding masks specific sequences of the target protein and therefore modulates target protein localization, phosphorylation state, stability, and molecular interactions (1-4). 14-3-3 proteins may also induce target protein conformational changes that modify target protein function (4,5). Distinct temporal and spatial expression patterns of 14-3-3 isoforms have been observed in development and in acute response to extracellular signals and drugs, suggesting that 14-3-3 isoforms may perform different functions despite their sequence similarities (4). Several studies suggest that 14-3-3 isoforms are differentially regulated in cancer and neurological syndromes (2,3).

Protocol

N/A

MSDS
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