Tau16A phosphorylation.     


AI Overview (Google's Gemini, March 26, 2026)

Yes, multiple phosphate (PO4) molecules can bind within the same functional regions or "pockets" of the tau protein, particularly in cases of hyperphosphorylation associated with Alzheimer’s disease. In summary, the high concentration of potential sites in specific domains makes it likely that multiple phosphate groups reside in the same or closely positioned areas, directly causing the conformational changes that lead to pathology.


       
       



Order of bindingReceptorLigandAffinityPocket IDResidues that formed the binding pocketPresence of SER, THR, TYR
1Tau16APO4-3.045receptor_Tau16A_4GLN-605 SER-606 CYS-608 GLY-609 SER-610 LYS-611 ASP-612SER-606 SER-610
2Tau16APO4-2.562receptor_Tau16A_1VAL-269 ASP-270 PHE-271 LEU-272 SER-273SER-273
3Tau16APO4-2.614receptor_Tau16A_1VAL-269 ASP-270 PHE-271 LEU-272 SER-273SER-273
4Tau16APO4-2.538receptor_Tau16A_9ALA-701 THR-703 ASP-704 HIS-705 GLY-706 ALA-707THR-703
5Tau16APO4-2.606receptor_Tau16A_9ALA-701 THR-703 ASP-704 HIS-705 GLY-706 ALA-707THR-703
6Tau16APO4-2.504receptor_Tau16A_2LYS-660 LEU-661 ASP-662 PHE-663 ASP-665 ARG-666 VAL-667
7Tau16APO4-2.445receptor_Tau16A_1VAL-269 ASP-270 PHE-271 LEU-272 SER-273SER-273
8Tau16APO4-2.324receptor_Tau16A_13TYR-711 PRO-722 ARG-723 HIS-724 LEU-725TYR-711
9Tau16APO4-2.299receptor_Tau16A_10VAL-667 GLN-668 SER-669 GLY-672 LEU-674 ASP-675SER-669