Extreme Thermostable Single-Stranded DNA Binding Protein (ET SSB) is a sequence-independent single-stranded DNA (ssDNA)-binding protein that does not bind RNA or double-stranded DNA (dsDNA). It primarily binds to ssDNA regions generated as helicases advance along the replication fork, thereby preventing newly formed ssDNA from reannealing into dsDNA or being degraded by nucleases. Upon binding to ssDNA, ET SSB destabilizes helical dimers, facilitating easier access of DNA polymerase to its substrate and thereby enhancing the catalytic activity of DNA polymerase and improving amplification efficiency in applications such as PCR. ET SSB is derived from an extremely thermophilic microorganism and retains full activity even after incubation at 95°C for 60 minutes. Thus, it is suitable for reactions requiring extremely high temperatures, such as nucleic acid amplification and sequencing. ET SSB can be added during PCR to stabilize denatured DNA or used as a PCR additive to protect ssDNA from nuclease digestion. Studies have shown that SSB improves PCR performance with complex templates by directly or indirectly acting on the polymerase, enhancing strand displacement activity and increasing affinity for primer-template complexes. Features High purity (≥95%) – minimizes protein interference. Ultra-low host gDNA (