Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integrity. Here, we used Escherichia coli as a model to understand the organization of these networks, focusing on the cooperation of the DnaK system with the upstream chaperone Trigger factor (TF) and the downstream GroEL. Quantitative proteomics revealed that DnaK interacts with at least similar to 700 mostly cytosolic proteins, including similar to 180 relatively aggregation-prone proteins that utilize DnaK extensively during and after initial folding. Upon deletion of TF, DnaK interacts increasingly with ribosomal and other small, basic proteins, while its association with large multidomain proteins is reduced. DnaK also functions prominently i...
SummaryThe GroEL/GroES chaperonin system mediates protein folding in the bacterial cytosol. Newly sy...
The molecular chaperones ClpB (Hsp104) and DnaK (Hsp70) co−operate in the ATP−dependent resolubiliza...
The main stress proteins of Escherichia coli function in an ordered protein-folding reaction. DnaK (...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
SummaryCellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome...
The E. coli chaperonin GroEL and its cofactor GroES promote protein folding by sequestering nonnativ...
AbstractA role for DnaK, the major E. coli Hsp70, in chaperoning de novo protein folding has remaine...
In Escherichia coli, the ribosome-associated Trigger Factor (TF) cooperates with the DnaK system in ...
AbstractTrigger factor and DnaK protect nascent protein chains from misfolding and aggregation in th...
Protein folding is often hampered by protein aggregation, which can be prevented by a variety of ...
Escherichia coli trigger factor (TF) and DnaK cooperate in the folding of newly synthesized proteins...
<div><p>Protein chaperones are essential in all domains of life to prevent and resolve protein misfo...
AbstractNewly synthesized proteins often require the assistance of molecular chaperones to efficient...
SummaryThe GroEL/GroES chaperonin system mediates protein folding in the bacterial cytosol. Newly sy...
The molecular chaperones ClpB (Hsp104) and DnaK (Hsp70) co−operate in the ATP−dependent resolubiliza...
The main stress proteins of Escherichia coli function in an ordered protein-folding reaction. DnaK (...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
SummaryCellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome...
The E. coli chaperonin GroEL and its cofactor GroES promote protein folding by sequestering nonnativ...
AbstractA role for DnaK, the major E. coli Hsp70, in chaperoning de novo protein folding has remaine...
In Escherichia coli, the ribosome-associated Trigger Factor (TF) cooperates with the DnaK system in ...
AbstractTrigger factor and DnaK protect nascent protein chains from misfolding and aggregation in th...
Protein folding is often hampered by protein aggregation, which can be prevented by a variety of ...
Escherichia coli trigger factor (TF) and DnaK cooperate in the folding of newly synthesized proteins...
<div><p>Protein chaperones are essential in all domains of life to prevent and resolve protein misfo...
AbstractNewly synthesized proteins often require the assistance of molecular chaperones to efficient...
SummaryThe GroEL/GroES chaperonin system mediates protein folding in the bacterial cytosol. Newly sy...
The molecular chaperones ClpB (Hsp104) and DnaK (Hsp70) co−operate in the ATP−dependent resolubiliza...
The main stress proteins of Escherichia coli function in an ordered protein-folding reaction. DnaK (...