Extreme Thermostable SSB (ET SSB)
$0.00 – $249.00
SKU | Volumes | Concentration | Price | Quantity | ||
---|---|---|---|---|---|---|
ETSSB-100 | 125ug | 500 ug/ml | $125.00 | |||
ETSSB-200 | 500ug | 500 ug/ml | $249.00 | |||
ETSSB-OEM | Any Size | Please inquire |
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Description
Description:
Extreme Thermostable SSB is a single-stranded DNA binding protein isolated from a hyperthermophilic microorganism. It remains fully active after incubation at 95°C for up to 60 minutes. Due to its ability to withstand extremely high temperature environments, ET SSB can be used in applications that require extremely high temperature conditions, such as nucleic acid amplification and sequencing.
Source:
Purified from an E. coli strain that overexpresses the SSB gene isolated from a hyperthermophilic microorganism.
Applications:
- Improves the yield of multiplex PCR and multiplex HAD
- Increases the yield and processivity of RT during RT-PCR(1,2)
- Increases the yield and specificity of PCR reactions(3-7)
- Improves the processivity of DNA polymerase(8)
- Stabilization and marking of ssDNA structure (9)
- Improves DNA sequencing through regions with strong secondary structure(6)
- Enhances the RecA activity for ssDNA binding and strand transfer (10,11)
Supplied in:
50 mM Tris-HCl
200 mM NaCl
1.0 mM DTT
0.1 mM EDTA
50% Glycerol
pH 7.5 @ 25°C
Unit Definition:
Sold by mass of pure protein as determined by OD280.
Recommended Storage Condition: -20ºC
Reference:
1. Baugh, L. R., Hill, A. A., Brown, E. L. & Hunter, C. P. (2001) Nucleic Acids Res 29, E29.
2. Villalva, C., Touriol, C., Seurat, P., Trempat, P., Delsol, G. & Brousset, P. (2001) Biotechniques 31, 81-3, 86.
3. Schwarz, K., Hansen-Hagge, T. & Bartram, C. (1990) Nucleic Acids Res 18, 1079.
4. Chou, Q. (1992) Nucleic Acids Res 20, 4371.
5. Oshima, R. G. (1992) Biotechniques 13, 188.
6. Rapley, R. (1994) Mol Biotechnol 2, 295-8.
7. Olszewski, M., Rebala, K., Szczerkowska, Z. & Kur, J. (2005) Mol Cell Probes 19, 203-5.
8. Myers, T. W. & Romano, L. J. (1988) J Biol Chem 263, 17006-15.
9. Delius, H., Mantell, N. J. & Alberts, B. (1972) J Mol Biol 67, 341-50.
10. Reddy, M. S., Vaze, M. B., Madhusudan, K. & Muniyappa, K. (2000) Biochemistry 39, 14250-62.
11. West, S. C., Cassuto, E. & Howard-Flanders, P. (1982) Mol Gen Genet 186, 333-8.
Additional information
OPTIONS | 125ug (500 ug/ml), 500ug (500 ug/ml), Any Size |
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