Human CADM3(Cell adhesion molecule 3) ELISA Kit

Este producto es parte de CADM - cell adhesion molecule
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935106861
info@markelab.com
name
Human CADM3(Cell adhesion molecule 3) ELISA Kit
category
ELISA Kits
provider
FineTest
reference
EH1255

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Product specifications

CategoryELISA Kits
Reactivityhuman
Detection MethodColorimetric
Assay DataQuantitative
Assay TypeSandwich ELISA, Double Antibody
Test Range0.781-50ng/ml
Size 196T
Sample TypeSerum,Plasma,Tissue homogenates,Other biological fluids
AvailabilityShipped within 10-14 working days.
Storage2-8 °C for 6 months
UniProt IDQ8N126
AliasBIgR,NECL1,TSLL1,CMT2FF,IGSF4B,Necl-1,synCAM3,TSLC1-like protein 1,Nectin-like protein 1,Immunoglobulin superfamily member 4B,Brain immunoglobulin receptor
BackgroundElisa Kits CADM3
StatusRUO

CADM3, also known as SynCAM3 or nectin-like molecule 1 (Necl-1), is a neural cell adhesion molecule critical for axon-dendrite interactions, synaptic formation, and neural development. It is highly expressed in the nervous system, particularly in the brain, where it mediates the formation and maintenance of synaptic connections. CADM3 plays a crucial role in axon guidance and fasciculation, processes that are essential for proper neural circuit assembly during development. It facilitates both homophilic and heterophilic interactions with other adhesion molecules, contributing to the establishment of synaptic specificity and organization. CADM3 interacts with intracellular scaffolding proteins and signaling pathways to regulate actin cytoskeletal dynamics and intracellular signaling. Mutations or altered expression of CADM3 have been associated with neurodevelopmental disorders and cognitive deficits, highlighting its importance in brain function. Structurally, CADM3 contains extracellular Ig-like domains responsible for its adhesive properties and intracellular domains that anchor to the cytoskeleton and signaling complexes. CADM3's functions extend beyond the nervous system, as it is also expressed in epithelial tissues, where it contributes to cellular polarity and adhesion. Its role in tumor suppression has been explored, with evidence suggesting that CADM3 downregulation enhances tumor cell invasiveness and metastasis.

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