Recent evidence from several laboratories shows that the paired helical filaments of Alzheimer's disease brains consist mainly of the protein tau in an abnormally phosphorylated form, but the mode of assembly is not understood. Here we use EM to study several constructs derived from human brain tau and expressed in Escherichia coli. All constructs or tau isoforms are rodlike molecules with a high tendency to dimerize in an antiparallel fashion, as shown by antibody labeling and chemical crosslinking. The length of the rods is largely determined by the region of internal repeats that is also responsible for microtubule binding. One unit length of the repeat domain (three or four repeats) is around 22-25 nm, comparable to the cross-section of...
Paired helical filaments (PHFs) isolated from Alzheimer\u27s disease (AD) brains were analyzed using...
Microtubule associated protein tau factor self-assembles into filamentous structures resembling the ...
Microtubules and their associated proteins form the basis of axonal transport; they are degraded dur...
AbstractThe paired helical filament, which comprises the major fibrous element of the neurofibrillar...
AbstractThe principal fibrous component of neurofibrillary pathology in Alzheimer's disease, the pai...
Tau, a major microtubule-associated protein in brain, forms abnormal fibers in Alzheimer's disease a...
Tau, a major microtubule-associated protein in brain, forms abnormal fibers in Alzheimer's disease a...
Two proteins immunologically related to porcine tau protein are found in the brain of Alzheimer's di...
AbstractThe abnormal aggregation of the microtubule associated protein tau into paired helical filam...
AbstractThe microtubule-associated protein tau is the main component of the paired helical filaments...
AbstractIn Alzheimer’s disease and related dementias, human tau protein aggregates into paired helic...
The microtubule-associated protein tau is the main component of the paired helical filaments (PHFs) ...
Fibrils composed of tau protein are a pathological hallmark of several neurodegenerative disorders i...
AbstractOver the past few years the systematic investigation of paired helical filament assembly fro...
AbstractPolyclonal anti-TAU antisera directed against native Tau protein and the NH2-terminal side o...
Paired helical filaments (PHFs) isolated from Alzheimer\u27s disease (AD) brains were analyzed using...
Microtubule associated protein tau factor self-assembles into filamentous structures resembling the ...
Microtubules and their associated proteins form the basis of axonal transport; they are degraded dur...
AbstractThe paired helical filament, which comprises the major fibrous element of the neurofibrillar...
AbstractThe principal fibrous component of neurofibrillary pathology in Alzheimer's disease, the pai...
Tau, a major microtubule-associated protein in brain, forms abnormal fibers in Alzheimer's disease a...
Tau, a major microtubule-associated protein in brain, forms abnormal fibers in Alzheimer's disease a...
Two proteins immunologically related to porcine tau protein are found in the brain of Alzheimer's di...
AbstractThe abnormal aggregation of the microtubule associated protein tau into paired helical filam...
AbstractThe microtubule-associated protein tau is the main component of the paired helical filaments...
AbstractIn Alzheimer’s disease and related dementias, human tau protein aggregates into paired helic...
The microtubule-associated protein tau is the main component of the paired helical filaments (PHFs) ...
Fibrils composed of tau protein are a pathological hallmark of several neurodegenerative disorders i...
AbstractOver the past few years the systematic investigation of paired helical filament assembly fro...
AbstractPolyclonal anti-TAU antisera directed against native Tau protein and the NH2-terminal side o...
Paired helical filaments (PHFs) isolated from Alzheimer\u27s disease (AD) brains were analyzed using...
Microtubule associated protein tau factor self-assembles into filamentous structures resembling the ...
Microtubules and their associated proteins form the basis of axonal transport; they are degraded dur...