<div><p>How chaperones interact with protein chains to assist in their folding is a central open question in biology. Obtaining atomistic insight is challenging in particular, given the transient nature of the chaperone-substrate complexes and the large system sizes. Recent single-molecule experiments have shown that the chaperone Trigger Factor (TF) not only binds unfolded protein chains, but can also guide protein chains to their native state by interacting with partially folded structures. Here, we used all-atom MD simulations to provide atomistic insights into how Trigger Factor achieves this chaperone function. Our results indicate a crucial role for the tips of the finger-like appendages of TF in the early interactions with both unfol...
Efficient folding of many newly synthesized proteins depends on assistance from molecular chaperones...
The <i>E. coli</i> chaperone trigger factor (TF) interacts directly with nascent polypeptide chains ...
The biological functions of proteins are governed by their three-dimensional fold. Protein folding, ...
How chaperones interact with protein chains to assist in their folding is a central open question in...
How chaperones interact with protein chains to assist in their folding is a central open ques-tion i...
Molecular chaperones are found in all cells and are essential for maintaining a functional proteome....
Molecular chaperones alter the folding properties of cellular proteins via mechanisms that are not w...
Proteins are uniquely-shaped macromolecules that function as biological machines, and regulate a liv...
ATP-independent chaperones like trigger factor are generally assumed to play passive roles in protei...
Molecular chaperones prevent aggregation and misfolding of proteins, but scarcity of structural data...
The major classes of molecular chaperones have highly variable sequences, sizes, and shapes, yet the...
Protein folding is often described as a search process, in which polypeptides explore different conf...
Molecular chaperones are central to cellular protein homeostasis. Dynamic disorder is a key feature ...
SummaryTrigger factor (TF) is a molecular chaperone that binds to bacterial ribosomes where it conta...
Trigger factor is a 48-kDa cytosolic chaperone protein found in all eubacteria. It has been shown to...
Efficient folding of many newly synthesized proteins depends on assistance from molecular chaperones...
The <i>E. coli</i> chaperone trigger factor (TF) interacts directly with nascent polypeptide chains ...
The biological functions of proteins are governed by their three-dimensional fold. Protein folding, ...
How chaperones interact with protein chains to assist in their folding is a central open question in...
How chaperones interact with protein chains to assist in their folding is a central open ques-tion i...
Molecular chaperones are found in all cells and are essential for maintaining a functional proteome....
Molecular chaperones alter the folding properties of cellular proteins via mechanisms that are not w...
Proteins are uniquely-shaped macromolecules that function as biological machines, and regulate a liv...
ATP-independent chaperones like trigger factor are generally assumed to play passive roles in protei...
Molecular chaperones prevent aggregation and misfolding of proteins, but scarcity of structural data...
The major classes of molecular chaperones have highly variable sequences, sizes, and shapes, yet the...
Protein folding is often described as a search process, in which polypeptides explore different conf...
Molecular chaperones are central to cellular protein homeostasis. Dynamic disorder is a key feature ...
SummaryTrigger factor (TF) is a molecular chaperone that binds to bacterial ribosomes where it conta...
Trigger factor is a 48-kDa cytosolic chaperone protein found in all eubacteria. It has been shown to...
Efficient folding of many newly synthesized proteins depends on assistance from molecular chaperones...
The <i>E. coli</i> chaperone trigger factor (TF) interacts directly with nascent polypeptide chains ...
The biological functions of proteins are governed by their three-dimensional fold. Protein folding, ...