Festive Deal Bacteria-derived Hes1 Recombinant Protein His Tag Collection [T18y0NtV]
Festive Deal Bacteria-derived Hes1 Recombinant Protein His Tag Collection [T18y0NtV] Discover the Innovative Research Festive Deal Bacteria-derived Hes1 Recombinant Protein His Tag Collection [T18y0NtV], a cutting-edge research tool designed for advanced molecular biology applications. This high-purity recombinant prot
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Festive Deal Bacteria-derived Hes1 Recombinant Protein His Tag Collection [T18y0NtV]
Discover the Innovative Research Festive Deal Bacteria-derived Hes1 Recombinant Protein His Tag Collection [T18y0NtV], a cutting-edge research tool designed for advanced molecular biology applications. This high-purity recombinant protein is a key component for understanding the complex mechanisms of cell development and differentiation. With its exceptional purity of >90% (as confirmed by SDS-PAGE), this protein is ideal for various research applications, including protein analysis, cell signaling studies, and drug discovery.Product Specifications and Benefits
The Festive Deal Bacteria-derived Hes1 Recombinant Protein His Tag Collection [T18y0NtV] is produced through recombinant technology in E. coli, ensuring a consistent and reliable source for your research needs. This liquid protein is buffered in a 0.2um-filtered solution containing 55mM TRIS-Cl, pH 8.2, and 150mM NaCl, providing optimal conditions for stability and functionality. The protein is stored at -20°C, maintaining its integrity for up to 3 months, making it convenient for long-term research projects. Key features include:- High Purity: >90% purity as confirmed by SDS-PAGE.
- Convenient Storage: Stable for up to 3 months at -20°C.
Applications and Target Audience
The Festive Deal Bacteria-derived Hes1 Recombinant Protein His Tag Collection [T18y0NtV] is a valuable resource for researchers investigating the roles of HES1 in various biological processes, such as neurogenesis, myogenesis, hematopoiesis, and sex determination. This protein is particularly relevant in studies of endoderm-derived endocrine organs and neuroendocrine cells. Ideal for use in:- Cell Signaling: Investigating the Notch pathway and its impact on cell fate and differentiation.
- Drug Discovery: Identifying potential therapeutic targets in diseases related to HES1 regulation.
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