SHC-Transforming Protein 2 (SHC2) Antibody

221€ (50 µg)
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935106861
info@markelab.com
name
SHC-Transforming Protein 2 (SHC2) Antibody
category
Primary Antibodies
provider
Abbexa
reference
abx330129
tested applications
ELISA, WB
Description
SHC2 Antibody is a Rabbit Polyclonal against SHC2.
Documents del producto
Instrucciones
Data sheet
Product specifications
Category | Primary Antibodies |
Immunogen Target | SHC-Transforming Protein 2 (SHC2) |
Host | Rabbit |
Reactivity | Human, Rat |
Recommended Dilution | ELISA: 1/10000, WB: 1/500 - 1/2000. Optimal dilutions/concentrations should be determined by the end user. |
Clonality | Polyclonal |
Conjugation | Unconjugated |
Isotype | IgG |
Purification | Purified by affinity chromatography. |
Size 1 | 50 µg |
Size 2 | 100 µg |
Form | Liquid |
Tested Applications | ELISA, WB |
Buffer | PBS containing 50% glycerol, 0.5% BSA and 0.02% sodium azide. |
Availability | Shipped within 5-10 working days. |
Storage | Aliquot and store at -20°C. Avoid repeated freeze/thaw cycles. |
Dry Ice | No |
UniProt ID | P98077 |
Gene ID | 25759 |
Alias | SCK,SHCB,SLI,Protein Sck,SHC-transforming protein B,SHC-transforming protein 2 |
Background | Antibody anti-SHC2 |
Status | RUO |
Descripción
SHC2, also known as SCK, is an adaptor protein primarily expressed in neural tissues, where it mediates signaling downstream of receptor tyrosine kinases and neurotrophin receptors, including TrkA/B. Like SHC1, it contains PTB and SH2 domains that facilitate interactions with phosphorylated receptors, activating Ras/MAPK and PI3K/Akt pathways to regulate processes such as neuronal survival, differentiation, and synaptic plasticity. SHC2 is essential for neurotrophin signaling, supporting neural development and maintenance of neuronal connections in the brain. Dysregulation of SHC2 has been associated with neurodevelopmental and neurodegenerative disorders, including impaired neuronal survival and axon guidance. Studies suggest that altered SHC2 expression may also contribute to certain cancers through its ability to regulate mitogenic and survival signaling pathways. Knockout models display defects in neuronal signaling, synapse formation, and brain development, highlighting its specialized role in the nervous system and neurotrophin-mediated signaling pathways.
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