A761CDD76B1592FF4CC2B06C5382B09E481AF1968E65F10BDAF110B937261FD26CF318A435530E981C8DFD4BD76DC970

Pore-forming protein that forms cations-selective hydrophilic pores of around 1 nm and causes cardiac stimulation and hemolysis. Pore formation is a multi-step process that involves specific recognition of membrane sphingomyelin (but neither cholesterol nor phosphatidylcholine) using aromatic rich region and adjacent phosphocholine (POC) binding site, firm binding to the membrane (mainly driven by hydrophobic interactions) accompanied by the transfer of the N-terminal region to the lipid-water interface and finally pore formation after oligomerisation of several monomers.

Source:http://purl.uniprot.org/SHA-384/A761CDD76B1592FF4CC2B06C5382B09E481AF1968E65F10BDAF110B937261FD26CF318A435530E981C8DFD4BD76DC970

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Pore-forming protein that forms cations-selective hydrophilic pores of around 1 nm and causes cardiac stimulation and hemolysis. Pore formation is a multi-step process that involves specific recognition of membrane sphingomyelin (but neither cholesterol nor phosphatidylcholine) using aromatic rich region and adjacent phosphocholine (POC) binding site, firm binding to the membrane (mainly driven by hydrophobic interactions) accompanied by the transfer of the N-terminal region to the lipid-water interface and finally pore formation after oligomerisation of several monomers.