High-quality Recombinant Mouse Tgf Beta 1 Protein(n-his)(active) Bundle [2RZqIG9o]
Recombinant Mouse TGF beta 1 Protein (N-His) (Active) Introducing our Recombinant Mouse TGF beta 1 Protein (N-His) (Active), a high-quality, recombinant protein designed for researchers in the field of cellular biology and immunology. This active pro
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Recombinant Mouse TGF beta 1 Protein (N-His) (Active)
Introducing our Recombinant Mouse TGF beta 1 Protein (N-His) (Active), a high-quality, recombinant protein designed for researchers in the field of cellular biology and immunology. This active protein is derived from E. coli and offers exceptional purity, ensuring reliable and consistent results in your experiments.Product Features and Specifications
Our Recombinant Mouse TGF beta 1 Protein (N-His) (Active) boasts several key features that make it an ideal choice for your research needs. With a calculated molecular weight of 13.8 kDa and an observed molecular weight of 16 kDa, this protein is highly purified, exceeding 98% purity as determined by reducing SDS-PAGE. It is also endotoxin-free, with less than 0.1 EU per μg of the protein, ensuring minimal interference in your experiments.- High Purity: >98% as determined by reducing SDS-PAGE
- Endotoxin-Free: < 0.1 EU per μg of the protein
Applications and Benefits
The Recombinant Mouse TGF beta 1 Protein (N-His) (Active) is a versatile tool for studying the role of TGF-beta 1 in various cellular processes, including cell division, differentiation, motility, adhesion, and death. This protein is particularly useful for researchers investigating the regulation of cytokine secretion and activity, as well as the modulation of cytokine receptor expression. With its potent bio-activity, this protein can inhibit the IL-4 dependent proliferation in HT-2 cells, making it a valuable resource for exploring the complex interactions within the TGF-beta family.- Biological Activity: Measure by its ability to inhibit the IL-4 dependent proliferation in HT-2 cells, with an ED50 < 0.1 ng/mL
- Applications: Ideal for studying cell signaling, cytokine regulation, and immune response
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