Protein folding is often hampered by protein aggregation, which can be prevented by a variety of chaperones in the cell. A dataset that evaluates which chaperones are effective for aggregation-prone proteins would provide an invaluable resource not only for understanding the roles of chaperones, but also for broader applications in protein science and engineering. Therefore, we comprehensively evaluated the effects of the major Escherichia coli chaperones, trigger factor, DnaK/DnaJ/GrpE, and GroEL/GroES, on ∼800 aggregation-prone cytosolic E. coli proteins, using a reconstituted chaperone-free translation system. Statistical analyses revealed the robustness and the intriguing properties of chaperones. The DnaK and GroEL systems drastical...
The journey by which proteins navigate their energy landscapes to their native structures is complex...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
For cells to function, the concentrations of all proteins in the cell must be maintained at the prop...
MOTIVATION: Despite intense effort, it has been difficult to explain chaperone dependencies of prote...
The E. coli chaperonin GroEL and its cofactor GroES promote protein folding by sequestering nonnativ...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
Misfolding and aggregation are major challenges in proteopathies, including Alzheimer's and Parkinso...
After the discovery of the need for extensive assistance in protein folding in the case of many nasc...
Background: The overproduction of recombinant proteins in host cells often leads to their misfolding...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
SummaryCellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome...
Molecular chaperones ensure that their substrate proteins reach the functional native state and prev...
Abstract Background The overproduction of recombinant proteins in host cells often leads to their mi...
Molecular chaperones play an integral role in the folding of most polypeptides in vivo, and protect ...
AbstractThe quantitative contribution of chaperonin GroEL to protein folding in E. coli was analyzed...
The journey by which proteins navigate their energy landscapes to their native structures is complex...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
For cells to function, the concentrations of all proteins in the cell must be maintained at the prop...
MOTIVATION: Despite intense effort, it has been difficult to explain chaperone dependencies of prote...
The E. coli chaperonin GroEL and its cofactor GroES promote protein folding by sequestering nonnativ...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
Misfolding and aggregation are major challenges in proteopathies, including Alzheimer's and Parkinso...
After the discovery of the need for extensive assistance in protein folding in the case of many nasc...
Background: The overproduction of recombinant proteins in host cells often leads to their misfolding...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
SummaryCellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome...
Molecular chaperones ensure that their substrate proteins reach the functional native state and prev...
Abstract Background The overproduction of recombinant proteins in host cells often leads to their mi...
Molecular chaperones play an integral role in the folding of most polypeptides in vivo, and protect ...
AbstractThe quantitative contribution of chaperonin GroEL to protein folding in E. coli was analyzed...
The journey by which proteins navigate their energy landscapes to their native structures is complex...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
For cells to function, the concentrations of all proteins in the cell must be maintained at the prop...