The GroES heptamer is the molecular co-chaperonin that partners with the tetradecamer chaperonin GroEL, which assists in the folding of various nonnative polypeptide chains in Escherichia coli. Gp31 is a structural and functional analogue of GroES encoded by the bacteriophage T4, becoming highly expressed in T4-infected E. coli, taking over the role of GroES, favoring the folding of bacteriophage proteins. Despite being slightly larger, gp31 is quite homologous to GroES in terms of its tertiary and quaternary structure, as well as in its function and mode of interaction with the chaperonin GroEL. Here, we performed a side-by-side comparison of GroES and gp31 heptamer complexes by (ion mobility) tandem mass spectrometry. Surprisingly, we obs...
AbstractIn the presence of MgATP or MgADP the E. coli chaperonin proteins, GroEL and GroES, form a s...
AbstractThe co-chaperonin GroES is an essential partner in protein folding mediated by the chaperoni...
<div><p>Many proteins comprising of complex topologies require molecular chaperones to achieve their...
The GroES heptamer is the molecular co-chaperonin that partners with the tetradecamer chaperonin Gro...
Propagation of bacteriophage T4 in its host Escherichia coli involves the folding of the major capsi...
Correct protein folding is the foundation for all cellular processes. Often this is not a spontaneou...
AbstractThe Gp31 protein from bacteriophage T4 functionally substitutes for the bacterial co-chapero...
Bacteriophage T4 produces a GroES analogue, gp31, which cooperates with the Escherichia coli GroEL t...
A subset of essential cellular proteins requires the assistance of chaperonins (in Escherichia coli,...
It has been suggested that the bacterial GroEL chaperonin accommodates only one substrate at any giv...
The mechanism of GroEL (chaperonin)-mediated protein folding is only partially understood. We have a...
Molecular chaperones play an integral role in the folding of most polypeptides in vivo, and protect ...
Many biological active proteins are assembled in protein complexes. Understanding the (dis)assembly ...
The productive folding of substrate proteins by the GroEL complex of Escherichia coli requires the a...
AbstractThe affinity of four short peptides for the Escherichia coli molecular chaperone GroEL was s...
AbstractIn the presence of MgATP or MgADP the E. coli chaperonin proteins, GroEL and GroES, form a s...
AbstractThe co-chaperonin GroES is an essential partner in protein folding mediated by the chaperoni...
<div><p>Many proteins comprising of complex topologies require molecular chaperones to achieve their...
The GroES heptamer is the molecular co-chaperonin that partners with the tetradecamer chaperonin Gro...
Propagation of bacteriophage T4 in its host Escherichia coli involves the folding of the major capsi...
Correct protein folding is the foundation for all cellular processes. Often this is not a spontaneou...
AbstractThe Gp31 protein from bacteriophage T4 functionally substitutes for the bacterial co-chapero...
Bacteriophage T4 produces a GroES analogue, gp31, which cooperates with the Escherichia coli GroEL t...
A subset of essential cellular proteins requires the assistance of chaperonins (in Escherichia coli,...
It has been suggested that the bacterial GroEL chaperonin accommodates only one substrate at any giv...
The mechanism of GroEL (chaperonin)-mediated protein folding is only partially understood. We have a...
Molecular chaperones play an integral role in the folding of most polypeptides in vivo, and protect ...
Many biological active proteins are assembled in protein complexes. Understanding the (dis)assembly ...
The productive folding of substrate proteins by the GroEL complex of Escherichia coli requires the a...
AbstractThe affinity of four short peptides for the Escherichia coli molecular chaperone GroEL was s...
AbstractIn the presence of MgATP or MgADP the E. coli chaperonin proteins, GroEL and GroES, form a s...
AbstractThe co-chaperonin GroES is an essential partner in protein folding mediated by the chaperoni...
<div><p>Many proteins comprising of complex topologies require molecular chaperones to achieve their...