<div><p>Protein chaperones are essential in all domains of life to prevent and resolve protein misfolding during translation and proteotoxic stress. HSP70 family chaperones, including <i>E. coli</i> DnaK, function in stress induced protein refolding and degradation, but are dispensable for cellular viability due to redundant chaperone systems that prevent global nascent peptide insolubility. However, the function of HSP70 chaperones in mycobacteria, a genus that includes multiple human pathogens, has not been examined. We find that mycobacterial DnaK is essential for cell growth and required for native protein folding in <i>Mycobacterium smegmatis</i>. Loss of DnaK is accompanied by proteotoxic collapse characterized by the accumulation of ...
In Escherichia coli, the ribosome-associated Trigger Factor (TF) cooperates with the DnaK system in ...
Recent evidence supports the view that cellular protein folding may be mediated by molecular chapero...
In Escherichia coli, the binding of non-native protein substrates to the Hsp70 chaperone DnaK is med...
Protein chaperones are essential in all domains of life to prevent and resolve protein misfolding du...
AbstractA role for DnaK, the major E. coli Hsp70, in chaperoning de novo protein folding has remaine...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
AbstractTrigger factor and DnaK protect nascent protein chains from misfolding and aggregation in th...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
The protein homeostasis network ensures a proper balance between synthesis, folding, and degradation...
International audienceChaperone proteins are essential in all living cells to ensure protein homeost...
SummaryCellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome...
Small heat shock proteins (sHsps) can efficiently prevent the aggregation of unfolded proteins in vi...
AbstractThe physiological roles of the molecular chaperones trigger factor and DnaK in de novo prote...
Small heat shock proteins (sHsps) can efficiently prevent the aggregation of unfolded proteins in vi...
In Escherichia coli, the ribosome-associated Trigger Factor (TF) cooperates with the DnaK system in ...
Recent evidence supports the view that cellular protein folding may be mediated by molecular chapero...
In Escherichia coli, the binding of non-native protein substrates to the Hsp70 chaperone DnaK is med...
Protein chaperones are essential in all domains of life to prevent and resolve protein misfolding du...
AbstractA role for DnaK, the major E. coli Hsp70, in chaperoning de novo protein folding has remaine...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
AbstractTrigger factor and DnaK protect nascent protein chains from misfolding and aggregation in th...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integr...
The protein homeostasis network ensures a proper balance between synthesis, folding, and degradation...
International audienceChaperone proteins are essential in all living cells to ensure protein homeost...
SummaryCellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome...
Small heat shock proteins (sHsps) can efficiently prevent the aggregation of unfolded proteins in vi...
AbstractThe physiological roles of the molecular chaperones trigger factor and DnaK in de novo prote...
Small heat shock proteins (sHsps) can efficiently prevent the aggregation of unfolded proteins in vi...
In Escherichia coli, the ribosome-associated Trigger Factor (TF) cooperates with the DnaK system in ...
Recent evidence supports the view that cellular protein folding may be mediated by molecular chapero...
In Escherichia coli, the binding of non-native protein substrates to the Hsp70 chaperone DnaK is med...