All-in-one Alexa Fluor® 594 Anti-eif4e Holiday Edition [0daYBuv8]
Alexa Fluor® 594 Anti-eIF4E Antibody Introducing the All-in-one Alexa Fluor® 594 Anti-eif4e Holiday Edition [0daYBuv8] Antibody, a powerful tool for studying protein translation initiation in eukaryotic cells. This monoclonal antibody is designed to specifically recognize and bind to eIF
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Alexa Fluor® 594 Anti-eIF4E Antibody
Introducing the All-in-one Alexa Fluor® 594 Anti-eif4e Holiday Edition [0daYBuv8] Antibody, a powerful tool for studying protein translation initiation in eukaryotic cells. This monoclonal antibody is designed to specifically recognize and bind to eIF4E, a crucial component of the eIF4F complex involved in cap-dependent translation initiation. The high affinity and specificity of this antibody make it an ideal choice for researchers seeking to understand the intricate mechanisms behind protein synthesis.Product Features
The Alexa Fluor® 594 conjugation provides excellent fluorescence properties, enabling visualization and quantification of eIF4E in various applications such as immunocytochemistry (ICC). This antibody is produced in mice and is of the IgG2a κ isotype, offering a reliable and consistent performance across different experimental setups. Key features include:- High specificity: Recognizes eIF4E with high affinity and specificity, ensuring accurate results.
- Excellent fluorescence: Alexa Fluor® 594 conjugation provides strong and stable fluorescence, enhancing detection sensitivity.
- Wide range of applications: Suitable for use in ICC, allowing for detailed analysis of eIF4E localization and expression.
Practical Uses
The All-in-one Alexa Fluor® 594 Anti-eif4e Holiday Edition [0daYBuv8] Antibody is an invaluable resource for researchers studying the molecular mechanisms of protein translation initiation. Its ability to detect eIF4E with precision makes it ideal for:- Immunocytochemistry: Visualize eIF4E localization and expression patterns in cells.
- Protein-protein interactions: Investigate the interactions between eIF4E and other components of the eIF4F complex.
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