Intrinsically disordered proteins (IDPs) lack a tertiary structure. Amyloidogenic IDPs (aIDPs) in particular have attracted great interest due to their implication in several devastating diseases as well as in critical biological functions. However, the conformational changes that trigger amyloid formation in aIDPs are largely unknown. aIDPs' conformational polymorphism at the monomer level encumbers their study using bulk techniques. Single-molecule techniques like atomic force microscopy-based single-molecule force spectroscopy represent a promising approach and a >carrier-guest> strategy, in which the protein of interest is mechanically protected, was developed to overcome the spurious signals from the noisy proximal region. However, sin...
Single-molecule force spectroscopy with the atomic force microscope provides molecular level insight...
Single molecule AFM is a powerful technique affording the opportunity to understand the mechanical p...
The all-atom additive CHARMM36 protein force field is widely used in molecular modeling and simulati...
AbstractNanomechanical analysis of proteins by single-molecule force spectroscopy based on atomic fo...
Mechanical unfolding and refolding may regulate the molecular elasticity of modular proteins with me...
Abstract Computer simulations of protein unfolding sub-stantially help to interpret force-extension ...
The mechanostability of proteins plays an important role in various biological processes, for exampl...
Most of studies in protein nanomechanics have used the atomic force microscope (AFM) in its force-me...
Here, we describe the single molecule force spectroscopy (SMFS)-based experimental protocol we have ...
The structural disorder of intrinsically unstructured proteins is the outcome of a complex ensemble ...
The structural disorder of the intrinsically-unstructured-proteins is the outcome of a complex ensem...
Single‐molecule force spectroscopy (SMFS) with the atomic force microscope (AFM) provides remarkable...
Elastomeric proteins are subject to mechanical tensions under biological settings and possess mechan...
This article belongs to the Special Issue Single-Molecule Protein Dynamics.Intermittent jumping forc...
Intrinsically disordered proteins (IDPs) have received increasing attention in recent studies due to...
Single-molecule force spectroscopy with the atomic force microscope provides molecular level insight...
Single molecule AFM is a powerful technique affording the opportunity to understand the mechanical p...
The all-atom additive CHARMM36 protein force field is widely used in molecular modeling and simulati...
AbstractNanomechanical analysis of proteins by single-molecule force spectroscopy based on atomic fo...
Mechanical unfolding and refolding may regulate the molecular elasticity of modular proteins with me...
Abstract Computer simulations of protein unfolding sub-stantially help to interpret force-extension ...
The mechanostability of proteins plays an important role in various biological processes, for exampl...
Most of studies in protein nanomechanics have used the atomic force microscope (AFM) in its force-me...
Here, we describe the single molecule force spectroscopy (SMFS)-based experimental protocol we have ...
The structural disorder of intrinsically unstructured proteins is the outcome of a complex ensemble ...
The structural disorder of the intrinsically-unstructured-proteins is the outcome of a complex ensem...
Single‐molecule force spectroscopy (SMFS) with the atomic force microscope (AFM) provides remarkable...
Elastomeric proteins are subject to mechanical tensions under biological settings and possess mechan...
This article belongs to the Special Issue Single-Molecule Protein Dynamics.Intermittent jumping forc...
Intrinsically disordered proteins (IDPs) have received increasing attention in recent studies due to...
Single-molecule force spectroscopy with the atomic force microscope provides molecular level insight...
Single molecule AFM is a powerful technique affording the opportunity to understand the mechanical p...
The all-atom additive CHARMM36 protein force field is widely used in molecular modeling and simulati...