Intrinsically disordered regions in proteins often function as binding motifs in protein-protein interactions. The mechanistic aspects and molecular details of such coupled binding and folding reactions, which involve formation of multiple noncovalent bonds, have been broadly studied theoretically, but experimental data are scarce. Here, using a combination of protein semisynthesis to incorporate phosphorylated amino acids, backbone amide-to-ester modifications, side chain substitutions, and binding kinetics, we examined the interaction between the intrinsically disordered motif of amyloid precursor protein (APP) and the phosphotyrosine binding (PTB) domain of Mint2. We show that the interaction is regulated by a self-inhibitory segment of ...
Despite much progress in understanding the folding and the aggregation processes of proteins, the ru...
This work investigates the role of N- to C- termini coupling in the folding transition of small, sin...
Most proteins require appropriate folding in order to perform their respective functions, whereas mi...
Many intrinsically disordered proteins (IDPs) attain a well-defined structure in a coupled folding a...
Proteins associated with neurodegenerative diseases are highly pleiomorphic and may adopt an all-α-h...
There are several diseases which are caused by amyloid, a deposit of aggregated protein. Examples of...
Intrinsically disordered proteins (IDPs) are characterized by a lack of persistent structure. Since ...
A protein can fold efficiently with high fidelity if on average native contacts survive longer than ...
Proteins are complex structures and years of research have been spent on attempts to understand thei...
Protein-protein interactions are at the heart of regulatory and signaling processes in the cell. In ...
AbstractDespite much progress in understanding the folding and the aggregation processes of proteins...
Intrinsically disordered proteins (IDPs) and intrinsically disordered regions (IDRs) of proteins are...
Identifying the forces that drive proteins to misfold and aggregate, rather than to fold into their ...
It is increasingly recognized that molecular chaperones play a key role in modulating the formation ...
A common strategy to study the mechanism of amyloid formation is the characterization of the structu...
Despite much progress in understanding the folding and the aggregation processes of proteins, the ru...
This work investigates the role of N- to C- termini coupling in the folding transition of small, sin...
Most proteins require appropriate folding in order to perform their respective functions, whereas mi...
Many intrinsically disordered proteins (IDPs) attain a well-defined structure in a coupled folding a...
Proteins associated with neurodegenerative diseases are highly pleiomorphic and may adopt an all-α-h...
There are several diseases which are caused by amyloid, a deposit of aggregated protein. Examples of...
Intrinsically disordered proteins (IDPs) are characterized by a lack of persistent structure. Since ...
A protein can fold efficiently with high fidelity if on average native contacts survive longer than ...
Proteins are complex structures and years of research have been spent on attempts to understand thei...
Protein-protein interactions are at the heart of regulatory and signaling processes in the cell. In ...
AbstractDespite much progress in understanding the folding and the aggregation processes of proteins...
Intrinsically disordered proteins (IDPs) and intrinsically disordered regions (IDRs) of proteins are...
Identifying the forces that drive proteins to misfold and aggregate, rather than to fold into their ...
It is increasingly recognized that molecular chaperones play a key role in modulating the formation ...
A common strategy to study the mechanism of amyloid formation is the characterization of the structu...
Despite much progress in understanding the folding and the aggregation processes of proteins, the ru...
This work investigates the role of N- to C- termini coupling in the folding transition of small, sin...
Most proteins require appropriate folding in order to perform their respective functions, whereas mi...