14-3-3 Protein Epsilon (YWHAE) Antibody

Este producto es parte de YWHAE - 14-3-3 protein epsilon
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52€ (10 µg)

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935106861
info@markelab.com
name
14-3-3 Protein Epsilon (YWHAE) Antibody
category
Primary Antibodies
provider
Abbexa
reference
abx013879
tested applications
ELISA, WB

Description

Rabbit polyclonal antibody against 14-3-3 epsilon protein. Immunogen region is C-terminal.

Documents del producto

Instrucciones
Data sheet
Descargar

Product specifications

Category
Primary Antibodies
Immunogen Target
14-3-3 Protein Epsilon (YWHAE)
Host
Rabbit
Reactivity
Human, Mouse, Rat
Recommended Dilution
WB: 1/500 - 1/3000, ELISA: 1/20000. Optimal dilutions/concentrations should be determined by the end user.
Clonality
Polyclonal
Conjugation
Unconjugated
Isotype
IgG
Purification
Purified from rabbit antiserum by affinity chromatography using epitope-specific immunogen.
Size 1
10 µg
Size 2
100 µg
Size 3
200 µg
Size 4
300 µg
Size 5
1 mg
Form
Liquid
Tested Applications
ELISA, WB
Buffer
PBS (without Mg<sup>2+</sup> and Ca<sup>2+</sup>), pH 7.4, 150 mM NaCl, 0.02% sodium azide, 50% glycerol.
Availability
Shipped within 5-10 working days.
Storage
Aliquot and store at -20°C. Avoid repeated freeze/thaw cycles.
Dry Ice
No
UniProt ID
P62258
Alias
YWHAE, 14-3-3E, HEL2, KCIP-1, MDCR, MDS,14-3-3 epsilon
Background
Antibody anti-YWHAE
Status
RUO
Note
Concentration: 1 mg/ml - 

Descripción

YWHAE, another member of the 14-3-3 family, functions as an adaptor protein that regulates protein-protein interactions, cellular localization, and stability of signaling molecules. By binding to phosphorylated targets, YWHAE modulates pathways such as MAPK, Wnt/β-catenin, and PI3K/Akt, controlling processes like cell proliferation, apoptosis, and cytoskeletal dynamics. It is highly expressed in neuronal tissues, where it plays critical roles in brain development, axon guidance, and synaptic function. YWHAE also regulates the DNA damage response and tumor suppression pathways by interacting with proteins like p53 and Chk1. Dysregulation of YWHAE is linked to developmental disorders, including Miller-Dieker syndrome and neurodevelopmental abnormalities, as well as cancers where it promotes tumor progression and metastasis. Knockout models exhibit defects in brain development, impaired cell migration, and increased susceptibility to stress, emphasizing its role in neurodevelopment, cell signaling, and maintaining cellular integrity.

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