In the cell, the correct folding of many proteins depends on the function of preexisting ones known as Molecular Chaperones (for a review see Hartl and Hayer-Hartl 2009). These, were defined as proteins that bind to and stabilize an otherwise unstable conformation of another protein, and by controlling binding and release, facilitate its correct fate in vivo, be it folding, oligomeric assembly, transport to a particular subcellular compartment, or disposal by degradation. Molecular chaperones do not convey steric information specifying correct folding: instead, they prevent incorrect interactions within and between nonnative peptides, thus typically increasing the yield but not the rate of folding reactions. Molecular chaperones are ubiquit...
Efficient folding of many newly synthesized proteins depends on assistance from molecular chaperones...
Chaperonins are biological nanomachines that help newly translated proteins to fold by rescuing them...
By virtue of their general ability to bind (hold) translocating or unfolding polypeptides otherwise ...
The biological functions of proteins are governed by their three-dimensional fold. Protein folding, ...
Molecular chaperones are highly conserved proteins that promote proper folding of other proteinsin v...
Molecular chaperones are a class of proteins that interact with the non-native conformations of othe...
No abstract.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/64572/1/21290_ftp.pd
nhgri.nih.gov The native (correctly folded) state of a protein is required for biological activity a...
Copyright © 2011 M. Anaul Kabir et al. This is an open access article distributed under the Creative...
Conserved families of molecular chaperones assist protein folding in the cell. Here we review the co...
Conserved families of molecular chaperones assist protein folding in the cell. Here we review the co...
AbstractHuman misfolding diseases arise when proteins adopt non-native conformations that endow them...
Efficient folding of many newly synthesized proteins depends on assistance from molecular chaperones...
This introductory article proposes a conceptual framework in which to consider the information that ...
Molecular chaperones assist de novo protein folding and facilitate the refolding of stress-denatured...
Efficient folding of many newly synthesized proteins depends on assistance from molecular chaperones...
Chaperonins are biological nanomachines that help newly translated proteins to fold by rescuing them...
By virtue of their general ability to bind (hold) translocating or unfolding polypeptides otherwise ...
The biological functions of proteins are governed by their three-dimensional fold. Protein folding, ...
Molecular chaperones are highly conserved proteins that promote proper folding of other proteinsin v...
Molecular chaperones are a class of proteins that interact with the non-native conformations of othe...
No abstract.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/64572/1/21290_ftp.pd
nhgri.nih.gov The native (correctly folded) state of a protein is required for biological activity a...
Copyright © 2011 M. Anaul Kabir et al. This is an open access article distributed under the Creative...
Conserved families of molecular chaperones assist protein folding in the cell. Here we review the co...
Conserved families of molecular chaperones assist protein folding in the cell. Here we review the co...
AbstractHuman misfolding diseases arise when proteins adopt non-native conformations that endow them...
Efficient folding of many newly synthesized proteins depends on assistance from molecular chaperones...
This introductory article proposes a conceptual framework in which to consider the information that ...
Molecular chaperones assist de novo protein folding and facilitate the refolding of stress-denatured...
Efficient folding of many newly synthesized proteins depends on assistance from molecular chaperones...
Chaperonins are biological nanomachines that help newly translated proteins to fold by rescuing them...
By virtue of their general ability to bind (hold) translocating or unfolding polypeptides otherwise ...