
N6-(6-Aminohexyl)-ATP-Cy5 Triethylammonium salt
Catalog Number | F02-0098 |
Category | Cyanine5 |
Molecular Formula | C49H67N8O20P3S2 (free acid) |
Molecular Weight | 1245.15 (free acid) |
Catalog Number | Size | Price | Quantity |
---|---|---|---|
F02-0098 | -- | $-- |
* Please be kindly noted products are not for therapeutic use. We do not sell to patients.
Product Introduction
N6-(6-Aminohexyl)-ATP-Cy5 Triethylammonium salt is a crucial chemical in the field of biomedicine and emerges as a vital catalyst for the advancement of pharmaceuticals targeting diverse ailments. It exhibits an exceptional functionality specifically tailored for exploring and comprehending intricate ATP-dependent mechanisms and cellular communication pathways. By virtue of its illuminating Cy5 fluorescence tag, it expedites enhanced visualization and imaging during biological experiments, thereby contributing towards unraveling the complexities of drug interactions and disease etiology.
- Chemical Information
- Product Specification
- Application
Purity | ≥95% by HPLC |
IUPAC Name | 2-((1E,3E)-5-((E)-1-(6-((6-((9-((2R,3R,4S,5R)-3,4-dihydroxy-5-(((hydroxy((hydroxy(phosphonooxy)phosphoryl)oxy)phosphoryl)oxy)methyl)tetrahydrofuran-2-yl)-9H-purin-6-yl)amino)hexyl)amino)-6-oxohexyl)-3,3-dimethyl-5-sulfoindolin-2-ylidene)penta-1,3-dien-1-yl)-1-ethyl-3,3-dimethyl-3H-indol-1-ium-5-sulfonate;triethylammonium salt |
Solubility | Soluble in Water |
Appearance | Blue Liquid |
Excitation | 649 nm |
Emission | 670 nm |
Storage | Store at -20°C |
N6-(6-Aminohexyl)-ATP-Cy5 Triethylammonium salt is a fluorescent nucleotide analog used in various biochemical and cell biology applications. Here are some key applications of N6-(6-Aminohexyl)-ATP-Cy5 Triethylammonium salt:
Fluorescent Tagging of Nucleotides: N6-(6-Aminohexyl)-ATP-Cy5 is employed to label nucleotides in biochemical assays, allowing researchers to visualize and track nucleotide incorporation. This application is particularly useful in studying DNA and RNA synthesis, as well as in nucleotide-binding protein interactions. The Cy5 fluorophore provides strong fluorescence, facilitating high-resolution imaging and quantitative analysis.
Enzyme Activity Assays: Researchers use N6-(6-Aminohexyl)-ATP-Cy5 to investigate the activity of ATP-dependent enzymes such as kinases and polymerases. By incorporating the labeled ATP into their reactions, they can monitor enzyme kinetics and substrate specificity through fluorescence-based detection methods. This helps in understanding enzyme mechanisms and screening for potential inhibitors.
Cellular Imaging: This fluorescent ATP analog can be used in live-cell imaging to study cellular processes that involve ATP. For instance, it can be introduced into cells to monitor ATP-utilizing processes like signal transduction, metabolism, and vesicle trafficking. The Cy5 fluorescence allows for real-time visualization of these dynamic cellular events.
Protein-ATP Interaction Studies: N6-(6-Aminohexyl)-ATP-Cy5 is valuable in studying the binding interactions between proteins and ATP. By using this labeled nucleotide in binding assays, researchers can identify and characterize ATP-binding proteins and their interaction dynamics. This information is critical for understanding various cellular functions and for drug development targeting ATP-utilizing proteins.
Recommended Services
Blogs & Technical Articles

- Hoechst Dyes: Definition, Structure, Mechanism and Applications
- Mastering the Spectrum: A Comprehensive Guide to Cy3 and Cy5 Dyes
- Fluorescent Probes: Definition, Structure, Types and Application
- Fluorescent Dyes: Definition, Mechanism, Types and Application
- Coumarin Dyes: Definition, Structure, Benefits, Synthesis and Uses
- BODIPY Dyes: Definition, Structure, Synthesis and Uses
- Cyanine Dyes: Definition, Structure, Types and Uses
- Fluorescein Dyes: Definition, Structure, Synthesis and Uses
- Rhodamine Dyes: Definition, Structure, Uses, Excitation and Emission
- Unlocking the Power of Fluorescence Imaging: A Comprehensive Guide
- Cell Imaging: Definitions, Systems, Protocols, Dyes, and Applications
- Lipid Staining: Definition, Principles, Methods, Dyes, and Uses
- Flow Cytometry: Definition, Principles, Protocols, Dyes, and Uses
- Nucleic Acid Staining: Definition, Principles, Dyes, Procedures, and Uses
- DNA Staining: Definition, Procedures, Benefits, Dyes and Uses
- Cell Staining: Definition, Principles, Protocols, Dyes, and Uses
- Ion Imaging: Definition, Principles, Benefits, Dyes, and Uses
- Fluorescent Labeling: Definition, Principles, Types and Applications
Recommended Products