S100B Protein (AA 1-92) (His-IF2DI Tag)
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- Target See all S100B Proteins
- S100B (S100 Calcium Binding Protein B (S100B))
- Protein Type
- Recombinant
- Protein Characteristics
- AA 1-92
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Origin
- Human
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Source
- Escherichia coli (E. coli)
- Purification tag / Conjugate
- This S100B protein is labelled with His-IF2DI Tag.
- Application
- Western Blotting (WB), ELISA
- Purity
- Greater than 95 % by SDS-PAGE gel analyses
- Sterility
- 0.2 μm filtered
- Top Product
- Discover our top product S100B Protein
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- Application Notes
- Optimal working dilution should be determined by the investigator.
- Restrictions
- For Research Use only
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- Format
- Lyophilized
- Reconstitution
- Centrifuge the vial at 10,000 rpm for 1 minute, reconstitute at 200 μg/mL in sterile distilled water by gentle pipetting 2-3 times, don't vortex
- Buffer
- Lyophilized from a 0.2 μm filtered solution in PBS with 5 % trehalose, pH 7.4
- Storage
- 4 °C,-20 °C
- Storage Comment
- -20°C for 12 months as lyophilized, 2-8°C for 1 month under sterile conditions after reconstitution
- Expiry Date
- 12 months
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- Target
- S100B (S100 Calcium Binding Protein B (S100B))
- Alternative Name
- S100B (S100B Products)
- Synonyms
- NEF Protein, S100 Protein, S100-B Protein, S100beta Protein, S100P Protein, AI850290 Protein, Bpb Protein, si:dkey-110p14.2 Protein, wu:fq18b10 Protein, zgc:92776 Protein, S100 calcium binding protein B Protein, S100 protein, beta polypeptide, neural Protein, S100 calcium binding protein, beta (neural) Protein, S100B Protein, S100b Protein, s100b Protein
- Background
- NEF, Protein S100 B, Protein S100-B, S 100 calcium binding protein beta chain, S 100 protein beta chain, S-100 protein beta chain, S-100 protein subunit beta, S100, S100 calcium binding protein beta (neural), S100 calcium-binding protein B, S100 protein beta chain, S100B, S100B_HUMAN, S100beta
- Molecular Weight
- 31 kDa
- UniProt
- P04271
- Pathways
- Regulation of Muscle Cell Differentiation, Positive Regulation of Immune Effector Process, Toll-Like Receptors Cascades, Regulation of long-term Neuronal Synaptic Plasticity, S100 Proteins
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