TREML4 / Alexa Fluor 488 / 817914
Product Details
Description | Protein A or G purified from hybridoma culture supernatant | |
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Conjugate | Alexa Fluor 488 | |
Clone | 817914 | |
Target Species | Mouse | |
Applications | FC | |
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Catalog # | Sign in to view product details, citations, and spectra | |
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About TREML4
Predicted to enable signaling receptor activity. Involved in positive regulation of toll-like receptor 7 signaling pathway. Predicted to be located in endoplasmic reticulum. Predicted to be active in cell surface. Predicted to colocalize with endosome membrane and lysosomal membrane. [provided by Alliance of Genome Resources, Apr 2022]
Predicted to enable signaling receptor activity. Involved in positive regulation of toll-like receptor 7 signaling pathway. Predicted to be located in endoplasmic reticulum. Predicted to be active in cell surface. Predicted to colocalize with endosome membrane and lysosomal membrane. [provided by Alliance of Genome Resources, Apr 2022]
About Alexa Fluor 488
Alexa Fluor™ 488 (AF488, Alexa 488) has an excitation peak at 488 nm and an emission peak at 496 nm, and is considered a high-performance alternative to FITC. Alexa 488 is one of the most popular Alexa Fluor™ dyes and is widely used in Fluorescence Microscopy, flow cytometry, and for staining low expression markers. It is bright, highly photostable, resistant to pH changes, and less susceptible to photobleaching. Alexa 488 and is similar in size, brightness and application to DyLight™ 488, iFluor® 488 and CF®488A.
Alexa Fluor™ 488 (AF488, Alexa 488) has an excitation peak at 488 nm and an emission peak at 496 nm, and is considered a high-performance alternative to FITC. Alexa 488 is one of the most popular Alexa Fluor™ dyes and is widely used in Fluorescence Microscopy, flow cytometry, and for staining low expression markers. It is bright, highly photostable, resistant to pH changes, and less susceptible to photobleaching. Alexa 488 and is similar in size, brightness and application to DyLight™ 488, iFluor® 488 and CF®488A.
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