About Products Protein Database Contact

spaO

Gene
spaO
Protein
Surface presentation of antigens protein SpaO
Organism
Salmonella dublin
Length
303 amino acids
Function
Involved in a secretory pathway responsible for the surface presentation of determinants needed for the entry of Salmonella species into mammalian cells.
Similarity
Belongs to the FliN/MopA/SpaO family.
Mass
33.792 kDa
Sequence
MSLRVRQIDRREWLLAQTATECQRHGQEATLEYPTRQGMWVRLSDAEKRWSAWIQPGDWLEHVSPALAGAAVSAGAEHLVVPWLAATERPFELPVPHLSCRRLCVENPVPGSALPEGKLLHIMSDRGGLWFEYLPELPAVGGGRPKMLRWPLRFVIGSSDTQRSLLGRIGIGDVLLIRTSRAEVYCYAKKLGHFNRVEGGIIVETLDIQHIEEENNTTETAETLPGLNQLPVKLEFVLYRKNVTLAELEAMGQQQLLSLPTNAELNVEIMANGVLLGNGELVQMNDTLGVEIHEWLSESGNGE

Gene
spaO
Protein
Surface presentation of antigens protein SpaO
Organism
Salmonella enteritidis
Length
303 amino acids
Function
Involved in a secretory pathway responsible for the surface presentation of determinants needed for the entry of Salmonella species into mammalian cells.
Similarity
Belongs to the FliN/MopA/SpaO family.
Mass
33.792 kDa
Sequence
MSLRVRQIDRREWLLAQTATECQRHGQEATLEYPTRQGMWVRLSDAEKRWSAWIQPGDWLEHVSPALAGAAVSAGAEHLVVPWLAATERPFELPVPHLSCRRLCVENPVPGSALPEGKLLHIMSDRGGLWFEYLPELPAVGGGRPKMLRWPLRFVIGSSDTQRSLLGRIGIGDVLLIRTSRAEVYCYAKKLGHFNRVEGGIIVETLDIQHIEEENNTTETAETLPGLNQLPVKLEFVLYRKNVTLAELEAMGQQQLLSLPTNAELNVEIMANGVLLGNGELVQMNDTLGVEIHEWLSESGNGE

Gene
spaO
Protein
Surface presentation of antigens protein SpaO
Organism
Salmonella typhi
Length
303 amino acids
Function
Involved in a secretory pathway responsible for the surface presentation of determinants needed for the entry of Salmonella species into mammalian cells.
Similarity
Belongs to the FliN/MopA/SpaO family.
Mass
33.764 kDa
Sequence
MSLRVRQIDRREWLLAQTATECQRHGREATLEYPTRQGMWVRLSDAEKRWSAWIKPGGWLEHVSPALAGAAVSAGAEHLVVPWLAATERPFELPVPHLSCRRLCVENPVPGSALPEGKLLHIMSDRGGLWFEHLPELPAVGGGRPKMLRWPLRFVIGSSDTQRSLLGRIGIGDVLLIRTSRAEVYCYAKKLGHFNRVEGGIIVETLDIQHIEEENNTTETAETLPGLNQLPVKLEFVLYRKNVTLAELEAMGQQQLLSLPTNVELNVEIMANGVLLGNGELVQMNDTLGVEIHEWLSESGNGE

Gene
spaO
Protein
Surface presentation of antigens protein SpaO
Organism
Salmonella typhimurium (strain LT2 / SGSC1412 / ATCC 700720)
Length
303 amino acids
Function
Involved in a secretory pathway responsible for the surface presentation of determinants needed for the entry of Salmonella species into mammalian cells.
Similarity
Belongs to the FliN/MopA/SpaO family.
Mass
33.794 kDa
Sequence
MSLRVRQIDRREWLLAQTATECQRHGREATLEYPTRQGMWVRLSDAEKRWSAWIKPGDWLEHVSPALAGAAVSAGAEHLVVPWLAATERPFELPVPHLSCRRLCVENPVPGSALPEGKLLHIMSDRGGLWFEHLPELPAVGGGRPKMLRWPLRFVIGSSDTQRSLLGRIGIGDVLLIRTSRAEVYCYAKKLGHFNRVEGGIIVETLDIQHIEEENNTTETAETLPGLNQLPVKLEFVLYRKNVTLAELEAMGQQQLLSLPTNAELNVEIMANGVLLGNGELVQMNDTLGVEIHEWLSESGNGE

Gene
spaO
Protein
Surface presentation of antigens protein SpaO
Organism
Shigella flexneri
Length
293 amino acids
Function
Required for surface presentation of invasion plasmid antigens. Could play a role in preserving the translocation competence of the Ipa antigens. Required for invasion and for secretion of the three Ipa proteins.
Similarity
Belongs to the FliN/MopA/SpaO family.
Mass
33.418 kDa
Sequence
MLRIKHFDANEKLQILYAKQLCERFSIQTFKNKFTGSESLVTLTSVCGDWVIRIDTLSFLKKKYEVFSGFSTQESLLHLSKCVFIESSSVFSIPELSDKITFRITNEIQYATTGSHLCCFSSSLGIIYFDKMPVLRNQVSLDLLHHLLEFCLGSSNVRLATLKRIRTGDIIIVQKLYNLLLCNQVIIGDYIVNDNNEAKINLSESNGESEHTEVSLALFNYDDINVKVDFILLEKNMTINELKMYVENELFKFPDDIVKHVNIKVNGSLVGHGELVSIEDGYGIEISSWMVKE

Gene
spaO
Protein
Surface presentation of antigens protein SpaO
Organism
Shigella sonnei
Length
293 amino acids
Function
Required for surface presentation of invasion plasmid antigens. Could play a role in preserving the translocation competence of the Ipa antigens. Required for invasion and for secretion of the three Ipa proteins (By similarity).
Similarity
Belongs to the FliN/MopA/SpaO family.
Mass
33.418 kDa
Sequence
MLRIKHFDANEKLQILYAKQLCERFSIQTFKNKFTGSESLVTLTSVCGDWVIRIDTLSFLKKKYEVFSGFSTQESLLHLSKCVFIESSSVFSIPELSDKITFRITNEIQYATTGSHLCCFSSSLGIIYFDKMPVLRNQVSLDLLHHLLEFCLGSSNVRLATLKRIRTGDIIIVQKLYNLLLCNQVIIGDYIVNDNNEAKINLSESNGESEHTEVSLALFNYDDINVKVDFILLEKNMTINELKMYVENELFKFPDDIVKHVNIKVNGSLVGHGELVSIEDGYGIEISSWMVKE