Many biological active proteins are assembled in protein complexes. Understanding the (dis)assembly of such complexes is therefore of major interest. Here we use mass spectrometry to monitor the disassembly induced by thermal activation of the heptameric co-chaperonins GroES and gp31. We use native electrospray ionization mass spectrometry (ESI-MS) on a Fourier transform ion cyclotron resonance (FT-ICR) mass spectrometer to monitor the stoichiometry of the chaperonins. A thermally controlled electrospray setup was employed to analyze conformational and stoichiometric changes of the chaperonins at varying temperature. The native ESI-MS data agreed well with data obtained from fluorescence spectroscopy as the measured thermal dissociation tem...
Small heat-shock proteins (sHSPs) are molecular chaperones that prevent irreversible aggregation thr...
AbstractChaperonins GroEL14 and GroES7 are heat-shock proteins implicated in the molecular response ...
Mass spectrometry is fast becoming a vital approach not only for the identification and quantificati...
Investigation of methodologies for analyses of noncovalently bound protein assemblies using Fourier ...
It is now possible to transfer large protein complexes intact into the gas phase using nano-electros...
The behavior of macromolecular systems at different temperatures is often crucial to their biologica...
Correct protein folding is the foundation for all cellular processes. Often this is not a spontaneou...
The GroES heptamer is the molecular co-chaperonin that partners with the tetradecamer chaperonin Gro...
The function of ScHSP26 is thermally controlled: the heat shock that causes the destabilization of t...
Chaperonin GroEL is a complex oligomeric heat shock protein (Hsp60) assisting the correct folding an...
In this study the structural and thermodynamic basis of the thermal stability of proteins has been s...
The function of ScHSP26 is thermally controlled: the heat shock that causes the destabilization of t...
Small heat-shock proteins (sHSPs) are molecular chaperones that prevent irreversible aggregation thr...
Together with other molecular chaperones, small heat shock proteins are key components of the protei...
AbstractIn order to understand the role of ATP hydrolysis of the chaperonin GroEL during protein fol...
Small heat-shock proteins (sHSPs) are molecular chaperones that prevent irreversible aggregation thr...
AbstractChaperonins GroEL14 and GroES7 are heat-shock proteins implicated in the molecular response ...
Mass spectrometry is fast becoming a vital approach not only for the identification and quantificati...
Investigation of methodologies for analyses of noncovalently bound protein assemblies using Fourier ...
It is now possible to transfer large protein complexes intact into the gas phase using nano-electros...
The behavior of macromolecular systems at different temperatures is often crucial to their biologica...
Correct protein folding is the foundation for all cellular processes. Often this is not a spontaneou...
The GroES heptamer is the molecular co-chaperonin that partners with the tetradecamer chaperonin Gro...
The function of ScHSP26 is thermally controlled: the heat shock that causes the destabilization of t...
Chaperonin GroEL is a complex oligomeric heat shock protein (Hsp60) assisting the correct folding an...
In this study the structural and thermodynamic basis of the thermal stability of proteins has been s...
The function of ScHSP26 is thermally controlled: the heat shock that causes the destabilization of t...
Small heat-shock proteins (sHSPs) are molecular chaperones that prevent irreversible aggregation thr...
Together with other molecular chaperones, small heat shock proteins are key components of the protei...
AbstractIn order to understand the role of ATP hydrolysis of the chaperonin GroEL during protein fol...
Small heat-shock proteins (sHSPs) are molecular chaperones that prevent irreversible aggregation thr...
AbstractChaperonins GroEL14 and GroES7 are heat-shock proteins implicated in the molecular response ...
Mass spectrometry is fast becoming a vital approach not only for the identification and quantificati...