CD299 / Alexa Fluor 405 / 120604

Product Details
Description Protein A or G purified from hybridoma culture supernatant
Conjugate Alexa Fluor 405
Clone 120604
Target Species Human
Applications FC
Supplier
Catalog # Sign in to view product details, citations, and spectra
Size
Price
Antigen
Host
Isotype
About CD299
This gene encodes a C-type lectin that functions in cell adhesion and pathogen recognition. This receptor recognizes a wide range of evolutionarily divergent pathogens with a large impact on public health, including tuberculosis mycobacteria, and viruses including Ebola, hepatitis C, HIV-1, influenza A, West Nile virus and the SARS-CoV acute respiratory syndrome coronavirus. The protein is organized into four distinct domains: a C-terminal carbohydrate recognition domain, a flexible tandem-repeat neck domain of variable length, a transmembrane region and an N-terminal cytoplasmic domain involved in internalization. This gene is closely related in terms of both sequence and function to a neighboring gene, CD209 (Gene ID: 30835), also known as DC-SIGN. The two genes differ in viral recognition and expression patterns, with this gene showing high expression in endothelial cells of the liver, lymph node and placenta. Polymorphisms in the tandem repeat neck domain are associated with resistance to SARS infection. [provided by RefSeq, May 2020]
About Alexa Fluor 405
Alexa Fluor™ 405 (AF405, Alexa 405) has an excitation peak at 401 nm and an emission peak at 421 nm and is similar in size, brightness and application to V450 (BD Biosciences), Vio®Blue® (Miltenyi Biotec), Cascade Blue® (ThermoFisher Scientific), Pacific Blue® (ThermoFisher Scientific). Alexa 405 is most commonly used in flow cytometery, and fluorescence microscopy applications.
Experiment Design Tools
Panel Builders

Looking to design a Microscopy or Flow Cytometry experiment?

Validation References
Additional
Sources
Reviews & Ratings
Looking for more options?

269 CD299 antibodies from over 18 suppliers available with over 45 conjugates.

 Compare