Human NRXN3 ELISA Kit is a Sandwich (quantitative) ELISA for the measurement of Human NRXN3 in Human in Cell Culture Media, Biofluids samples.
View Alternative Names
KIAA0743, NRXN3, Neurexin-3-beta, Neurexin III-beta
- sELISA
Supplier Data
Sandwich ELISA - Human NRXN3 ELISA Kit (AB313913)
Example of standard curve using ab313913. This standard curve is for demonstrative purposes only. A standard curve must be run with each assay.
Reactivity data
Product details
Human NRXN3 beta ELISA kit is an in vitro enzyme-linked immunosorbent assay for the quantitative measurement of human NRXN3 beta in serum, plasma and cell culture supernatants. This assay employs an antibody specific for human NRXN3 beta coated on a 96-well plate.
This ELISA kit shows no cross-reactivity with the following cytokines tested: human 4-1BB Ligand (TNFSF9), Activin RIIB, Aminopeptidase P2 (XPNPEP2), BAMBI (NMA), BOC, Brevican, Carbonic Anhydrase XII, Carboxypeptidase A2, CD300c (LMIR2), CD320 (TCblR, 8D6A), CDNF, CDO, CHST1, CHST4, CILP1, CNTF R alpha, CRIM1, CRTAC1, CXADR, Dopa Decarboxylase (DDC), DPPII (QPP, DPP7), DSPG3, EMR2, FCAR (CD89), FCRL1 (FcRH1), FCRL2 (FcRH2), Gas6, GPR56, GPVI, Hepsin, ILT2 (CD85j), Jagged 2, Kirrel3 (NEPH2), KLF4, LAIR1, LAMP, LAMP1 (CD107a), MDGA1, MIS RII.
Recovery
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Properties and storage information
Shipped at conditions
Appropriate short-term storage conditions
Appropriate long-term storage conditions
Storage information
Supplementary information
This supplementary information is collated from multiple sources and compiled automatically.
Biological function summary
The protein contributes to the formation of complex structures in synapses. NRXN3 interacts with neuroligins and other postsynaptic proteins forming a bridge across the synaptic cleft. This interaction is essential for the alignment and stabilization of pre- and postsynaptic formations influencing synaptic transmission. The NRXN3 complex enables specific synaptic architecture affecting both excitatory and inhibitory synapses.
Pathways
NRXN3 plays a role in key neural signaling routes. It participates in the synaptic formation and plasticity pathways being important for both synaptogenesis and synaptic maintenance. NRXN3 shares pathway interactions with proteins such as neuroligin and dystroglycan. This alignment is important for regulating synapse stabilization and may influence the release of neurotransmitters across synaptic junctions.
Product protocols
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Target data
Product promise
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