Notice: Error: The total number of locks exceeds the lock table size Error No: 1206 INSERT INTO oc_analytics set ip = '', agent = 'Mozilla/5.0 AppleWebKit/537.36 (KHTML, like Gecko; compatible; ClaudeBot/1.0; +claudebot@anthropic.com)', url = '/catalog/proteins-and-peptides/synthetic-nanodisc-human-claudin-9-protein-a318429', route = 'product/product', port = '1581', country_code ='US', country_name='United States', city='Columbus', organisation='', referrer='', adflag='N', adcampaign='', adurl='', product_id='318429' in D:\wwwroot_antibodies\system\library\db\mysqli.php on line 42Synthetic Nanodisc Human Claudin 9 Protein (A318429)
Synthetic nanodiscs offer a stable and biologically relevant environment that closely mimics cell membranes and enables full-length transmembrane human Claudin 9 protein to be purified and analysed in vitro.
Applications
ELISA, SDS-PAGE
Expression System
HEK293 cells
Nature
Synthetic
Protein Species
Human
Protein Length
Full length protein.
Tag
C-terminal Flag Tag
Molecular Weight
Full length human Claudin 9 protein has a MW of 22.8 kDa.
Conjugate
Unconjugated
Product Form
Lyophilized
Concentration
Reconstitution dependent.
Formulation
Lyophilized from nanodisc solubilization buffer (20mM Tris-HCl, 150mM NaCl, pH 8.0). Normally 5%–8% Trehalose is added as a protectant before lyophilization.
Storage
Shipped at 4°C. Lyophilized: Store at -20°C to -80°C. Reconstituted: Aliquot and store at -80°C. Product is stable for one year. Avoid freeze/thaw cycles.
Disclaimer
This product is for research use only. It is not intended for diagnostic or therapeutic use.
Synthetic Nanodisc Human Claudin 9 Protein (A318429)
ELISA plates were pre-coated with Synthetic Nanodisc Human Claudin 9 Protein (A318429) (0.2 µg/well). Serial diluted Anti-Flag Tag Antibody solutions were added, washed, and incubated with secondary antibody before ELISA reading. From this data, the EC50 for Anti-Flag Tag Antibody binding with CLDN9-Nanodisc is 6.168 µg/ml.
Synthetic Nanodisc Human Claudin 9 Protein (A318429)
Diagram showing how synthetic nanodiscs containing full-length multi-pass transmembrane proteins in a phospholipid bilayer are generated from native cell membranes.
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