Leucine Rich Repeat Containing Protein 4C (LRRC4C) Antibody

Este producto es parte de LRRC - Leucine-rich repeat-containing protein
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364€ (100 µg)

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935106861
info@markelab.com
name
Leucine Rich Repeat Containing Protein 4C (LRRC4C) Antibody
category
Primary Antibodies
provider
Abbexa
reference
abx234859
tested applications
ELISA, WB, IHC

Description

LRRC4C Antibody is a Rabbit Polyclonal against LRRC4C.

Documents del producto

Instrucciones
Data sheet
Descargar

Product specifications

Category
Primary Antibodies
Immunogen Target
Leucine Rich Repeat Containing Protein 4C (LRRC4C)
Host
Rabbit
Reactivity
Human, Mouse, Rat
Recommended Dilution
WB: 1/500 - 1/1000, IHC: 1/20 - 1/200. Optimal dilutions/concentrations should be determined by the end user.
Clonality
Polyclonal
Conjugation
Unconjugated
Isotype
IgG
Purity
≥ 95% (SDS-PAGE)
Purification
Purified by immunogen affinity chromatography.
Size 1
100 µg
Form
Liquid
Tested Applications
ELISA, WB, IHC
Buffer
PBS, pH 7.3, with 0.02% sodium azide and 50% glycerol.
Availability
Shipped within 5-12 working days.
Storage
Aliquot and store at -20°C. Avoid repeated freeze/thaw cycles.
Dry Ice
No
UniProt ID
Q9HCJ2
Gene ID
57689
OMIM
608817
Alias
LRRC4C, KIAA1580, NGL1,Netrin-G1 ligand ,NGL-1
Background
Antibody anti-LRRC4C
Status
RUO
Note
Concentration: 2 mg/ml - Validity: 12 months.

Descripción

LRRC4C, or netrin-G ligand 4 (NGL-4), is a member of the leucine-rich repeat protein family involved in synaptic adhesion, axon guidance, and neural circuit formation. It binds to netrin-G proteins at synaptic junctions, facilitating the establishment and stabilization of excitatory synapses in the central nervous system. LRRC4C is highly expressed in the brain, particularly in regions responsible for cognitive and motor functions, where it regulates synaptic plasticity, neuronal migration, and dendritic spine development. Dysregulation of LRRC4C has been linked to neurodevelopmental disorders, such as autism spectrum disorders (ASD) and epilepsy, where disrupted synaptic organization and connectivity lead to impaired brain function. Knockout studies reveal defects in synaptic architecture, altered neuronal communication, and reduced cognitive performance, highlighting its critical role in synaptic development, neural circuit organization, and proper brain function.

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