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Stabilized Wuhan Trimeric Spike Protein
Stabilized Wuhan Trimeric Spike Protein
Produced in CHO cells. Available in mg to grams.
We've created a stable, clonally derived, recombinant, suspension grown CHO cell line that produces a secreted, stabilized version of the trimeric spike protein of SARS-CoV-2.
This cell line is suitable for large scale manufacturing in chemically defined media. The secreted trimeric spike accumulates in the protein-free cell culture fluid of the cells. Our multi-step, HPLC-based purification process further ensures that the resulting trimeric protein is of high purity (> 95 %).
This protein is now available for applications such as diagnostics, R&D and vaccine development.
We've created a stable, clonally derived, recombinant, suspension grown CHO cell line that produces a secreted, stabilized version of the trimeric spike protein of SARS-CoV-2.
This cell line is suitable for large scale manufacturing in chemically defined media. The secreted trimeric spike accumulates in the protein-free cell culture fluid of the cells. Our multi-step, HPLC-based purification process further ensures that the resulting trimeric protein is of high purity (> 95 %).
This protein is now available for applications such as diagnostics, R&D and vaccine development.

Product datasheet
This product is intended for research use only.
Stabilized Trimeric Spike Protein SARS-CoV-2 (Wuhan) | |
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Modifications | C-terminal Transmembrane region replaced with a trimerization domain and a polyhistidine tag. Two stabilizing proline mutations and scrambled S1/S2 furin cleavage site (see reference) |
Isolate (Seq ID) | Wuhan-Hu-1 (GenBank: MN908947) |
Expression system | CHOExpressTMcells |
Purity | > 90 % as determined by SDS-PAGE |
Molecular weight | The recombinant SARS-CoV-2 trimeric spike protein consists of 3576 amino acids and predicts a molecular mass of ˜400 kDa. |
Endotoxin | < 1.0 EU per μg protein as determined by the LAL method. |
Format | Liquid |
Reference | Wrapp D. et al. Cryo-EM Structure of the 2019-nCoV Spike in the Prefusion Conformation. Science 367, 1260–1263 (2020) |