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Arseni, D.

Publications and source records attributed to Arseni, D..

2 recordsLinked to original sources

Age-dependent formation of TMEM106B amyloid filaments in human brain

Many age-dependent neurodegenerative diseases, like Alzheimers and Parkinsons, are characterised by abundant inclusions of amyloid filaments. Filamentous inclusions of the proteins tau, amyloid-{beta} (A{beta}), -synuclein and TDP-43 are the most common. Here, we used electron cryo-microscopy (cryo-EM) structure determination to show that residues 120-254 of the lysosomal type II transmembrane protein 106B (TMEM106B) also form amyloid filaments in the human brain. We solved cryo-EM structures of TMEM106B filaments from the brains of 22 individuals with neurodegenerative conditions, including sporadic and inherited tauopathies, A{beta}-amyloidoses, synucleinopathies and TDP-43opathies, as well as from the brains of two neurologically normal individuals. We observed three different TMEM106B folds, with no clear relationship between folds and diseases. The presence of TMEM106B filaments correlated with that of a 29 kDa sarkosyl-insoluble fragment of the protein on Western blots. The presence of TMEM106B filaments in the brains of older, but not younger, neurologically normal individuals indicates that they form in an age-dependent manner.

neuroscience↗

Cryo-EM Structures of Amyloid-β 42 Filaments from Human Brain

Filament assembly of amyloid-{beta} peptides ending at residue 42 (A{beta}42) is a central event in Alzheimers disease. We report the cryo-EM structures of A{beta}42 filaments from brain. Two structurally related S-shaped protofilament folds give rise to two types of filaments. Type I filaments were found mostly in the brains of individuals with sporadic Alzheimers disease and Type II filaments in individuals with familial Alzheimers disease and other conditions. The structures of A{beta}42 filaments from brain differ from those of filaments assembled in vitro. By contrast, in AppNL-F knock-in mice, A{beta}42 deposits were made of Type II filaments. Knowledge of A{beta}42 filament structures from human brain may lead to the development of inhibitors of assembly and improved imaging agents.

neuroscience↗