Transfected Stable Cell Lines
Reliable | High-Performance | Wide Rage
Precision reporter, kinase, immune receptor, biosimilar, Cas9, and knockout stable cell lines for diverse applications.
Cat. No. : EROT0307
| Cat. No. | EROT0307 |
| Recognition Site | ATCGT↓C |
| Size | 600 Units |
| Storage | 10mM Tris-HCl (pH 7.4 at 25 °C), 100mM KCl, 1mM DTT, 1mM EDTA, 0.2mg/ml BSA and 50% (v/v) glycerol |
A: The recognition sequence for Bsu15I is unique and allows for specific cleavage of DNA. Researchers should consult the enzyme's technical datasheet or the manufacturer's guidelines to identify the exact sequence and compare it with other restriction enzymes for optimal experimental design.
A: Like many restriction enzymes, Bsu15I may have optimal buffer conditions that maximize its cutting efficiency. It's essential to refer to the manufacturer's recommendations or accompanying documentation to determine the ideal buffer conditions for Bsu15I.
A: Bsu15I can be used in a double digest with other enzymes. However, compatibility will depend on buffer requirements, incubation temperatures, and other enzymatic conditions. Researchers should always perform a pilot experiment or consult enzyme compatibility charts when planning a double digest.
A: Bsu15I, like other enzymes, has an optimal storage condition that ensures its stability and prolonged activity. Typically, enzymes are stored at -20°C or colder in specific storage buffers. However, users should follow the manufacturer's guidelines for exact storage recommendations for Bsu15I.
A: Star activity is a phenomenon where a restriction enzyme cleaves DNA at sites other than its specific recognition sequence. While this can occur with various enzymes under non-optimal conditions, it's crucial to consult the technical datasheet or manufacturer's guidelines to know if Bsu15I exhibits such activity and the recommended measures to prevent it.
A: Bsu15I, like other restriction enzymes, is useful in various molecular biology applications, including cloning, fragment analysis, and DNA mapping. For specific studies or applications where Bsu15I has been highlighted, researchers should refer to scientific literature databases or consult with the enzyme's manufacturer.
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