One of the signatures of Alzheimer’s disease and tauopathies is fibrillization of the microtubule-associated protein tau. The purpose of this study was to compare the high-resolution structure of fibrils formed by two different tau four-repeat domain constructs, tau4RD and tauK18, using hydrogen–deuterium exchange coupled to mass spectrometry as a tool. While the two fibrils are found to be constructed on similar structural principles, the tauK18 fibril has a slightly more stable core. This difference in fibril core stability appears to be reflective of the mechanistic differences in the aggregation pathways of the two proteins
Tau fibrils are pathological aggregates that can transfer between neurons and then recruit soluble T...
The intracellular deposition of fibrils composed of the microtubule-associated protein Tau is a char...
AbstractThe paired helical filament, which comprises the major fibrous element of the neurofibrillar...
International audienceThe rigid core of intracellular tau filaments from Alzheimer’s disease (AD), P...
The accumulation of tau fibrils is associated with neurodegenerative diseases, which are collectivel...
Fibrillar aggregates of Aβ and Tau in the brain are the major hallmarks of Alzheimer’s disease. Most...
Although one of the priorities in Alzheimer’s research is to clarify the filament formation mechanis...
AbstractThe abnormal aggregation of the microtubule associated protein tau into paired helical filam...
Misfolding of the microtubule-binding protein tau into filamentous aggregates is characteristic of m...
Background: The misfolding of amyloidogenic proteins including human Tau protein, human prion protei...
Tau, a major microtubule-associated protein in brain, forms abnormal fibers in Alzheimer's disease a...
<div><h3>Background</h3><p>The misfolding of amyloidogenic proteins including human Tau protein, hum...
Tau, a major microtubule-associated protein in brain, forms abnormal fibers in Alzheimer's disease a...
The tau fibrillar structures from the brain of an Alzheimer\u27s patient have a core with a C-shaped...
In Alzheimer\u27s disease and frontotemporal dementias, the microtubule-associated protein Tau forms...
Tau fibrils are pathological aggregates that can transfer between neurons and then recruit soluble T...
The intracellular deposition of fibrils composed of the microtubule-associated protein Tau is a char...
AbstractThe paired helical filament, which comprises the major fibrous element of the neurofibrillar...
International audienceThe rigid core of intracellular tau filaments from Alzheimer’s disease (AD), P...
The accumulation of tau fibrils is associated with neurodegenerative diseases, which are collectivel...
Fibrillar aggregates of Aβ and Tau in the brain are the major hallmarks of Alzheimer’s disease. Most...
Although one of the priorities in Alzheimer’s research is to clarify the filament formation mechanis...
AbstractThe abnormal aggregation of the microtubule associated protein tau into paired helical filam...
Misfolding of the microtubule-binding protein tau into filamentous aggregates is characteristic of m...
Background: The misfolding of amyloidogenic proteins including human Tau protein, human prion protei...
Tau, a major microtubule-associated protein in brain, forms abnormal fibers in Alzheimer's disease a...
<div><h3>Background</h3><p>The misfolding of amyloidogenic proteins including human Tau protein, hum...
Tau, a major microtubule-associated protein in brain, forms abnormal fibers in Alzheimer's disease a...
The tau fibrillar structures from the brain of an Alzheimer\u27s patient have a core with a C-shaped...
In Alzheimer\u27s disease and frontotemporal dementias, the microtubule-associated protein Tau forms...
Tau fibrils are pathological aggregates that can transfer between neurons and then recruit soluble T...
The intracellular deposition of fibrils composed of the microtubule-associated protein Tau is a char...
AbstractThe paired helical filament, which comprises the major fibrous element of the neurofibrillar...