Official Recombinant 2019-ncov Nsp2 Protein (his Tag) Family Size [RsTen6XP]
Official Recombinant 2019-ncov Nsp2 Protein (his Tag) Family Size [RsTen6XP]: A Cutting-Edge Research Tool The Official Recombinant 2019-ncov Nsp2 Protein (his Tag) Family Size [RsTen6XP] is a high-quality research reagent designed for advanced molecular biology applications. This protein, derived from the SARS-C
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Official Recombinant 2019-ncov Nsp2 Protein (his Tag) Family Size [RsTen6XP]
Official Recombinant 2019-ncov Nsp2 Protein (his Tag) Family Size [RsTen6XP]: A Cutting-Edge Research Tool
The Official Recombinant 2019-ncov Nsp2 Protein (his Tag) Family Size [RsTen6XP] is a high-quality research reagent designed for advanced molecular biology applications. This protein, derived from the SARS-CoV-2 virus, is a crucial component in understanding the viral life cycle and developing effective treatments. With its His Tag, the protein is easily purified and detected, making it an invaluable tool for researchers in virology, immunology, and infectious diseases.- Enhanced purification and detection capabilities with His Tag
- Supports comprehensive studies on SARS-CoV-2 replication and transcription
- Contributes to the development of antiviral drugs and vaccines
Product Specifications and Technical Details
The Official Recombinant 2019-ncov Nsp2 Protein (his Tag) Family Size [RsTen6XP] is produced in E. coli and offers a purity of >95% as determined by reducing SDS-PAGE. It has a calculated molecular weight of 73.6 kDa and an observed molecular weight of 80 kDa. The protein is tagged with a C-His tag for improved purification and is not validated for activity. Key properties include:- Expression Host: E. coli
- Sequence: Ala1-Gly638
- Accession: YP_009725298.1
- Storage: Store at < -20°C for stability
Applications and Benefits in Research and Development
The Official Recombinant 2019-ncov Nsp2 Protein (his Tag) Family Size [RsTen6XP] is an essential component for researchers studying the molecular mechanisms of SARS-CoV-2. Its use in research can lead to significant advancements in the development of antiviral treatments and vaccines. Ideal for:- Investigating the role of NSP2 in viral replication and transcription
- Developing diagnostic tools for SARS-CoV-2 detection
- Assessing the efficacy of potential antiviral compounds
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