GABA(A) Receptor-Associated Protein Like 1 Protein

Este producto es parte de GABARAPL - GABA A Receptor Associated Protein Like Protein
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234€ (5 µg)

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935106861
info@markelab.com
name
GABA(A) Receptor-Associated Protein Like 1 Protein
category
Proteins and Peptides
provider
Abbexa
reference
abx261893
tested applications
SDS-PAGE

Description

GABARAPL1 is a recombinant protein.

Documents del producto

Instrucciones
Data sheet
Descargar

Product specifications

Category
Proteins and Peptides
Immunogen Target
GABARAPL1
Conjugation
Unconjugated
Expression
Recombinant
Purity
> 85% (SDS-PAGE)
Size 1
5 µg
Size 2
20 µg
Size 3
1 mg
Form
Liquid
Tested Applications
SDS-PAGE
Availability
Shipped within 5-10 working days.
Dry Ice
No
UniProt ID
Q9H0R8
Alias
APG8-LIKE,APG8L,ATG8,ATG8B,ATG8L,GEC1
Background
Protein GABARAPL1
Status
RUO
Note
This product is for research use only.   Not for human consumption, cosmetic, therapeutic or diagnostic use.

Descripción

GABARAPL1 is a member of the GABARAP (GABA-A receptor-associated protein) family, which plays a key role in intracellular trafficking, autophagy, and receptor regulation. It facilitates the transport and membrane localization of GABA-A receptors, contributing to inhibitory neurotransmission in the central nervous system. Beyond its role in neurotransmitter signaling, GABARAPL1 is a critical component of the autophagy machinery, interacting with ATG proteins to regulate autophagosome formation and cargo sequestration. It is involved in cellular homeostasis, protein degradation, and stress responses. Dysregulation of GABARAPL1 has been linked to neurodegenerative diseases, such as Alzheimer's and Parkinson's disease, where impaired autophagy disrupts protein clearance and neuronal survival. GABARAPL1 is also implicated in cancer, where altered expression influences tumor progression, survival, and chemoresistance through autophagy modulation. Its dual role in receptor trafficking and autophagy highlights GABARAPL1 as a critical regulator of cellular and neuronal function, making it a potential therapeutic target in neurodegeneration and cancer.

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