Hsp104, a protein disaggregase from yeast, can be engineered and potentiated to counter TDP-43, FUS, or α-synuclein misfolding and toxicity implicated in neurodegenerative disease. Here, we reveal that extraordinarily disparate mutations potentiate Hsp104. Remarkably, diverse single missense mutations at 20 different positions interspersed throughout the middle domain (MD) and small domain of nucleotide-binding domain 1 (NBD1) confer a therapeutic gain of Hsp104 function. Moreover, potentiation emerges from deletion of MD helix 3 or 4 or via synergistic missense mutations in the MD distal loop and helix 4. We define the most critical aspect of Hsp104 potentiation as enhanced disaggregase activity in the absence of Hsp70 and Hsp40. We sugges...
There is currently no cure for neurodegenerative disease or the underlying burden of protein aggrega...
Maintenance of optimal gene expression levels is critical for cell viability and homeostasis. Howeve...
Maintenance of optimal gene expression levels is critical for cell viability and homeostasis. Howeve...
Hsp104 is an AAA+ protein disaggregase, which can be potentiated via diverse mutations in its autore...
Potentiated variants of Hsp104, a protein disaggregase from yeast, can dissolve protein aggregates c...
The AAA+ protein disaggregase, Hsp104, increases fitness under stress by reversing stress-induced pr...
Protein aggregation is a biochemical hallmark of fatal neurodegenerative disease. Protein disaggrega...
Hsp104 is a AAA+ protein disaggregase found in yeast that employs energy from ATP hydrolysis to disa...
Hsp104 is a AAA+ protein disaggregase found in yeast that employs energy from ATP hydrolysis to disa...
l o single residues in helix 1, 2, or 3 of the middle domain oligomers (DeSantis et al., 2012; Lo Bi...
Protein misfolding is implicated in numerous lethal neurodegenerative disorders, including amyotroph...
Hsp104 is a hexameric AAA+ yeast disaggregase capable of solubilizing disordered aggregates and amyl...
Hsp104 is a protein remodeling factor from Saccharomyces cerevisiae which couples the energy release...
Hsp104 is a protein remodeling factor from Saccharomyces cerevisiae which couples the energy release...
There is currently no cure for neurodegenerative disease or the underlying burden of protein aggrega...
There is currently no cure for neurodegenerative disease or the underlying burden of protein aggrega...
Maintenance of optimal gene expression levels is critical for cell viability and homeostasis. Howeve...
Maintenance of optimal gene expression levels is critical for cell viability and homeostasis. Howeve...
Hsp104 is an AAA+ protein disaggregase, which can be potentiated via diverse mutations in its autore...
Potentiated variants of Hsp104, a protein disaggregase from yeast, can dissolve protein aggregates c...
The AAA+ protein disaggregase, Hsp104, increases fitness under stress by reversing stress-induced pr...
Protein aggregation is a biochemical hallmark of fatal neurodegenerative disease. Protein disaggrega...
Hsp104 is a AAA+ protein disaggregase found in yeast that employs energy from ATP hydrolysis to disa...
Hsp104 is a AAA+ protein disaggregase found in yeast that employs energy from ATP hydrolysis to disa...
l o single residues in helix 1, 2, or 3 of the middle domain oligomers (DeSantis et al., 2012; Lo Bi...
Protein misfolding is implicated in numerous lethal neurodegenerative disorders, including amyotroph...
Hsp104 is a hexameric AAA+ yeast disaggregase capable of solubilizing disordered aggregates and amyl...
Hsp104 is a protein remodeling factor from Saccharomyces cerevisiae which couples the energy release...
Hsp104 is a protein remodeling factor from Saccharomyces cerevisiae which couples the energy release...
There is currently no cure for neurodegenerative disease or the underlying burden of protein aggrega...
There is currently no cure for neurodegenerative disease or the underlying burden of protein aggrega...
Maintenance of optimal gene expression levels is critical for cell viability and homeostasis. Howeve...
Maintenance of optimal gene expression levels is critical for cell viability and homeostasis. Howeve...