AbstractTo investigate the importance of the seventh residue of the second and third repeat fragments (R2 and R3 peptides) of the microtubule-binding domain (MBD) for tau filamentous assembly, the residues Lys and Pro were substituted (R2-K7P and R3-P7K). The filament formations of the R2 and R3 peptides were almost lost due to their substitutions despite their overall conformational similarities. The NOE analyses showed the importance of the conformational flexibility for the R2 peptide and the coupled extended and helical conformations for the R3 peptide in their limited N-terminal regions around their seventh residues. The result shows that the filament formation of MBD is initiated from a short fragment region containing the minimal con...
Microtubule-associated proteins regulate microtubule dynamics, bundle actin filaments, and cross-lin...
Microtubule-associated proteins regulate microtubule dynamics, bundle actin filaments, and cross-lin...
The stability and dynamics of cytoskeleton in brain nerve cells are regulated by microtubule associa...
Although one of the priorities in Alzheimer’s research is to clarify the filament formation mechanis...
AbstractInvestigation of the mechanism of tau polymerization is indispensable for finding inhibitory...
AbstractThe abnormal aggregation of the microtubule associated protein tau into paired helical filam...
AbstractThe paired helical filament, which comprises the major fibrous element of the neurofibrillar...
The inhibition of tau fibrillation is a potential therapeu-tic target for Alzheimer’s and other neur...
This paper summarizes recent structural and functional studies on tau protein, its interactions with...
Tau is a microtubule-associated protein predominantly expressed in neuronal cells. In Alzheimer\u27s...
AbstractTau phosphorylation plays a crucial role in microtubule stabilization and in Alzheimer’s dis...
The self-assembly of the microtubule associated tau protein into fibrillar cell inclusions is linked...
Aggregation of the microtubule associated protein tau (MAPT) within neurons of the brain is the lead...
One of the hallmarks of Alzheimer’s disease is the formation of aggregates of the tau protein, a pro...
Tau is the major microtubule-associated protein in neuronal axons. It aggregates into "neurofibrilla...
Microtubule-associated proteins regulate microtubule dynamics, bundle actin filaments, and cross-lin...
Microtubule-associated proteins regulate microtubule dynamics, bundle actin filaments, and cross-lin...
The stability and dynamics of cytoskeleton in brain nerve cells are regulated by microtubule associa...
Although one of the priorities in Alzheimer’s research is to clarify the filament formation mechanis...
AbstractInvestigation of the mechanism of tau polymerization is indispensable for finding inhibitory...
AbstractThe abnormal aggregation of the microtubule associated protein tau into paired helical filam...
AbstractThe paired helical filament, which comprises the major fibrous element of the neurofibrillar...
The inhibition of tau fibrillation is a potential therapeu-tic target for Alzheimer’s and other neur...
This paper summarizes recent structural and functional studies on tau protein, its interactions with...
Tau is a microtubule-associated protein predominantly expressed in neuronal cells. In Alzheimer\u27s...
AbstractTau phosphorylation plays a crucial role in microtubule stabilization and in Alzheimer’s dis...
The self-assembly of the microtubule associated tau protein into fibrillar cell inclusions is linked...
Aggregation of the microtubule associated protein tau (MAPT) within neurons of the brain is the lead...
One of the hallmarks of Alzheimer’s disease is the formation of aggregates of the tau protein, a pro...
Tau is the major microtubule-associated protein in neuronal axons. It aggregates into "neurofibrilla...
Microtubule-associated proteins regulate microtubule dynamics, bundle actin filaments, and cross-lin...
Microtubule-associated proteins regulate microtubule dynamics, bundle actin filaments, and cross-lin...
The stability and dynamics of cytoskeleton in brain nerve cells are regulated by microtubule associa...