SAP102 Antibody (OTI3F2) [CoraFluor™ 1] Summary
| Description |
CoraFluor(TM) 1 is a high performance terbium-based TR-FRET (Time-Resolved Fluorescence Resonance Energy Transfer) or TRF (Time-Resolved Fluorescence) donor for high throughput assay development. CoraFluor(TM) 1 absorbs UV light at approximately 340 nm, and emits at approximately 490 nm, 545 nm, 585 nm and 620 nm. It is compatible with common acceptor dyes that absorb at the emission wavelengths of CoraFluor(TM) 1. CoraFluor(TM) 1 can be used for the development of robust and scalable TR-FRET binding assays such as target engagement, ternary complex, protein-protein interaction and protein quantification assays.
CoraFluor(TM) 1, amine reactive
CoraFluor(TM) 1, thiol reactive
For more information, please see our CoraFluor(TM) TR-FRET technology flyer. |
| Immunogen |
Full length human recombinant protein of human DLG3 (NP_066943) produced in HEK293T cell. |
| Isotype |
IgG1 |
| Clonality |
Monoclonal |
| Host |
Mouse |
| Gene |
DLG3 |
| Purity |
Immunogen affinity purified |
| Innovator's Reward |
Test in a species/application not listed above to receive a full credit towards a future purchase. |
Applications/Dilutions
| Dilutions |
- CyTOF-ready
- Flow Cytometry
- Western Blot
|
| Application Notes |
Optimal dilution of this antibody should be experimentally determined. |
Packaging, Storage & Formulations
| Storage |
Store at 4C in the dark. Do not freeze. |
| Buffer |
PBS |
| Preservative |
No Preservative |
| Purity |
Immunogen affinity purified |
Notes
CoraFluor (TM) is a trademark of Bio-Techne Corp. Sold for research purposes only under agreement from Massachusetts General Hospital. US patent 2022/0025254
Alternate Names for SAP102 Antibody (OTI3F2) [CoraFluor™ 1]
Background
Synapse-Associated Protein 102 (SAP102) is one of a family of plasma membrane-associated proteins found in synaptic junctions. Like other members of the family, SAP102 has three ~90 amino acid repeats called PDZ domains followed by an SH3 domain and a yeast guanylate kinase homology (GuK) domain. It is hypothesized that PDZ-domain interactions play a role in receptor and channel clustering which contributes to neuronal plasticity. SAP102 is believed to participate in the clustering of certain proteins, including NMDA receptors, shaker-type potassium channels at the synaptic membrane in CNS neurons. NMDA receptors and Shaker-type potassium channels both share C-terminal sequence homology consisting of a threonine/serine-X-valine-COOH (T/SXV) motif. Other neuronal proteins that share this motif (beta 1 adrenergic receptor, some serotonin receptors, some sodium channel subunits, and additional potassium channel subunits) may interact with SAP102 by binding to its PDZ domains. Neuronal nitric oxide synthase (nNOS), which lacks the T/SXV motif but which has its own PDZ domain, has been shown to associate with SAP102 in vitro through a pseudo-homotypic PDZ-PDZ interaction.
Limitations
This product is for research use only and is not approved for use in humans or in clinical diagnosis. Primary Antibodies are
guaranteed for 1 year from date of receipt.
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