
streptavidin
Sign in to saveStreptavidin is a 52 kDa protein (tetramer) purified from the bacterium Streptomyces avidinii. Streptavidin homo-tetramers have an extraordinarily high affinity for biotin (also known as vitamin B7 or vitamin H). With a dissociation constant (Kd) on the order of ≈10−14 mol/L, the binding of biotin to streptavidin is one of the strongest non-covalent interactions known in nature. Streptavidin is used extensively in molecular biology and bionanotechnology due to the streptavidin-biotin complex's resistance to organic solvents, denaturants (e.g. guanidinium chloride), detergents (e.g. SDS, Triton
Key facts
- Nonhuman protein.Organism
- Streptomyces avidinii
- Nonhuman protein.UniProt
- P22629
- Nonhuman protein.image
- Streptavidin.png
- Nonhuman protein.caption
- Structure of a single monomer from the streptavidin tetramer (ribbon diagram) with bound biotin (spheres);
via Wikipedia infobox
Research
14,683 papers- Streptavidin-Saporin: Converting Biotinylated Materials into Targeted Toxins.Toxins · 2023
- Stable, high-affinity streptavidin monomer for protein labeling and monovalent biotin detection.Biotechnology and bioengineering · 2013
- Streptavidin-biotin binding energetics.Biomolecular engineering · 1999
- Switchable reinforced streptavidin.Nanoscale · 2020
- Streptavidin-Affinity Grid Fabrication for Cryo-Electron Microscopy Sample Preparation.Journal of visualized experiments : JoVE · 2023
via PubMed
Clinical Trials
2 registered- NACOMPLETEDInterference of Biotin Supplementation in Biotin-streptavidin Platforms for Hormone TestingUniversity of Minnesota · NCT03034707
- PHASE1COMPLETEDDonor Peripheral Blood Stem Cell Transplant and Pretargeted Radioimmunotherapy in Treating Patients With High-Risk Advanced Acute Myeloid Leukemia, Acute Lymphoblastic Leukemia, or Myelodysplastic SyndromeFred Hutchinson Cancer Center · NCT00988715
Wikidata facts
Show 1 more fact
- Commons category
- Streptavidin
Sources (2)
via Wikidata · CC0
~11 min read
Article
9 sectionsContents
- Structure
- Origins of the high affinity
- Uses in biotechnology
- Variants with a controlled number of binding sites
- Comparison to avidin
- See also
- References
- Further reading
- External links
Streptavidin is a 52 kDa protein (tetramer) purified from the bacterium Streptomyces avidinii. Streptavidin homo-tetramers have an extraordinarily high affinity for biotin (also known as vitamin B7 or vitamin H). With a dissociation constant (Kd) on the order of ≈10−14 mol/L, the binding of biotin to streptavidin is one of the strongest non-covalent interactions known in nature. Streptavidin is used extensively in molecular biology and bionanotechnology due to the streptavidin-biotin complex's resistance to organic solvents, denaturants (e.g. guanidinium chloride), detergents (e.g. SDS, Triton X-100), proteolytic enzymes, and extremes of temperature and pH.
== Structure == thumb|Tetrameric structure of streptavidin with 2 bound biotins The crystal structure of streptavidin with biotin bound was reported by two groups in 1989. The structure was solved using multi wavelength anomalous diffraction by Hendrickson et al. at Columbia University and using multiple isomorphous replacement by Weber et al. at E. I. DuPont Central Research and Development Department. As of March 2025, there are 298 structures deposited in the Protein Data Bank. See this link for a complete list. The N and C termini of the 159 residue full-length protein are processed to give a shorter ‘core’ streptavidin, usually composed of residues 13–139; removal of the N and C termini is necessary for the highest biotin-binding affinity. The secondary structure of a streptavidin monomer is composed of eight antiparallel β-strands, which fold to give an antiparallel β-barrel tertiary structure. A biotin binding-site is located at one end of each β-barrel. Four identical streptavidin monomers (i.e. four identical β-barrels) associate to give streptavidin's tetrameric quaternary structure. The biotin binding-site in each barrel consists of residues from the interior of the barrel, together with a conserved Trp120 from a neighboring subunit. In this way, each subunit contributes to the binding site on the neighboring subunit, and so the tetramer can also be considered a dimer of functional dimers.