Product Description
The V5 tag is a 14 amino acid peptide derived from a small epitope on the P and V proteins of simian virus 5 (SV5), a member of the paramyxovirus family. This peptide can be expressed and detected with the protein of interest as an amino-terminal or carboxy-terminal fusion. Because of its small size, V5 tag is unlikely to affect the tagged protein’s biochemical properties. V5 tag is useful for the labeling and detection of proteins using immunoblotting, immunoprecipitation, and immunostaining techniques.
V5 tag Nanoselector Magnetic beads are ready to used resins for immunoprecipitation/pulldown of V5 tag fusion proteins.
V5 tag Nanoselector Magnetic beads have been specifically designed to bind V5 tag-fusion proteins. V5 tag Nanoselector Magnetic beads are based on small high-affinity recombinant alpaca antibody fragments covalently coupled to the surface of magnetic beads. V5 tag Nanoselector Magnetic beads are an ideal tool to isolate or purify V5 tag-fusion proteins fast and efficiently.
Product Performance
The V5 tag is a 14 amino acid peptide derived from a small epitope on the P and V proteins of simian virus 5 (SV5), a member of the paramyxovirus family. This peptide can be expressed and detected with the protein of interest as an amino-terminal or carboxy-terminal fusion. Because of its small size, V5 tag is unlikely to affect the tagged protein’s biochemical properties. V5 tag is useful for the labeling and detection of proteins using immunoblotting, immunoprecipitation, and immunostaining techniques.
V5 tag Nanoselector Magnetic beads are ready to used resins for immunoprecipitation/pulldown of V5 tag fusion proteins.
Storage Instructions
Shipped at ambient temperature. Upon receipt store at 4℃. Stable for 1 year. Do not freeze.
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Advantages of using an Alpaca Recombinant Secondary
1. Smaller size
Nanobodies are 1/10 the size of a traditional antibody (~15 kDa unconjugated). This means that the nanobody can penetrate tissue faster and deeper than other antibodies.
2. Easier to use
Due to their simple structure, nanobodies also have the advantage of increased stability and ease of use.
3. Easier production
When compared to a more traditional antibody, nanobodies are easier to develop and produce in the lab than monoclonal or polyclonal antibodies.
4. More consistent
Since nanobodies are recombinantly produced from clonal DNA, you are guaranteed the same product every time. Comparatively, polyclonal antibodies are produced in live animals and have a very low lot-to-lot consistency while monoclonal antibodies can suffer from drift.
5. Higher Affinity
Nanobodies benefit from consistently high binding affinity values.
Please note: All products are "FOR RESEARCH USE ONLY AND ARE NOT INTENDED FOR DIAGNOSTIC OR THERAPEUTIC USE"