Alzheimer disease (AD) is a progressive neurodegenerative disorder and the most common type of dementia worldwide. There is considerable evidence of age-related disruption of proteostasis being responsible for the development of AD. The proteasome is a multicatalytic enzyme complex that degrades both normal and damaged proteins, and an age-related decline in its activity has been implicated in age-related pathologies. Although proteasomal dysfunction is assumed to be a key AD hallmark, it remains unclear whether its role in disease onset is causative or secondary. In this study, we demonstrate that mice with proteasomal dysfunction exhibited memory impairment with associated neuronal loss, accumulation of phosphorylated tau, and activation ...
Extracted text; Protein turnover and homeostasis are regulated by the proteasomal system, which is c...
Disturbed proteostasis as a particular phenotype of the aging organism has been advanced in C. elega...
Protein folding stress in the endoplasmic reticulum (ER) may lead to activation of the unfolded prot...
Dysfunctions of the ubiquitin proteasome system (UPS) have been proposed to be involved in the aetio...
Abstract: Damaged and misfolded proteins accumulate during the aging process, impairing cell functio...
Impaired protein clearance likely increases the risk of protein accumulation disorders including Alz...
Background: Amyloid β (Aβ) deposits and the endoplasmic reticulum stress (ERS) are both well establi...
Perturbed neuronal proteostasis is a salient feature shared by both aging and protein misfolding dis...
The proteasome is the major protein degradation system within the cell, comprised of different prote...
Proteasomes (including constitutive proteasome, immunoproteasome, and their regulatory complexes) ar...
Intracellular protein clearance decreases with age, thus altering the vital balance between protein ...
AbstractThe proteasome is a multicatalytic complex involved in the degradation of polyubiquitinated ...
Defects in the ubiquitin-proteasome system have been related to aging and the development of neurode...
Background: Accumulating evidence indicates that abnormalities in tau protein play a critical role i...
Free radical-mediated damage to macromolecules and the resulting oxidative modification of different...
Extracted text; Protein turnover and homeostasis are regulated by the proteasomal system, which is c...
Disturbed proteostasis as a particular phenotype of the aging organism has been advanced in C. elega...
Protein folding stress in the endoplasmic reticulum (ER) may lead to activation of the unfolded prot...
Dysfunctions of the ubiquitin proteasome system (UPS) have been proposed to be involved in the aetio...
Abstract: Damaged and misfolded proteins accumulate during the aging process, impairing cell functio...
Impaired protein clearance likely increases the risk of protein accumulation disorders including Alz...
Background: Amyloid β (Aβ) deposits and the endoplasmic reticulum stress (ERS) are both well establi...
Perturbed neuronal proteostasis is a salient feature shared by both aging and protein misfolding dis...
The proteasome is the major protein degradation system within the cell, comprised of different prote...
Proteasomes (including constitutive proteasome, immunoproteasome, and their regulatory complexes) ar...
Intracellular protein clearance decreases with age, thus altering the vital balance between protein ...
AbstractThe proteasome is a multicatalytic complex involved in the degradation of polyubiquitinated ...
Defects in the ubiquitin-proteasome system have been related to aging and the development of neurode...
Background: Accumulating evidence indicates that abnormalities in tau protein play a critical role i...
Free radical-mediated damage to macromolecules and the resulting oxidative modification of different...
Extracted text; Protein turnover and homeostasis are regulated by the proteasomal system, which is c...
Disturbed proteostasis as a particular phenotype of the aging organism has been advanced in C. elega...
Protein folding stress in the endoplasmic reticulum (ER) may lead to activation of the unfolded prot...