Nanopore based sensors constitute a promising approach to single molecule protein characterization being able, in principle, to detect sequences, structural elements and folding states of proteins and polypeptide chains. In narrow nanopores, one of the open issues concerns the coupling between unfolding and translocation. Here, we studied the ubiquitin translocation in an -hemolysin nanopore, the most widely used pore for nanopore sensing, via all-atom molecular dynamics simulations. We completely characterize the co-translocational unfolding pathway finding that robust translocation intermediates are associated with the rearrangement of secondary structural elements, as also confirmed by coarse grained simulations. An interesting recurrent...
Abstract. The progress of molecular manipulation technology has made it possible to conduct controll...
The progress of molecular manipulation technology has made it possible to conduct controlled experim...
We thank Laurent Bacri for useful discussions and his expertise in data analysis. We thank Micayla B...
Nanopore based sensors constitute a promising approach to single molecule protein characterization b...
Nanopore sensing is attracting the attention of a large and varied scientific community. One of the ...
Nanopore sensing is attracting the attention of a large and varied scientific community. One of the ...
We study the translocation of the ubiquitin molecule (Ubq) across a channel with a double section wh...
Cells are divided into compartments and separated from the environment by lipid bilayer membranes. E...
Cells are divided into compartments and separated from the environment by lipid bilayer membranes. E...
AbstractNanopore translocation experiments are increasingly applied to probe the secondary structure...
Single molecule protein sequencing would represent a disruptive burst in proteomic research with imp...
The application of nanopore sensing utilizing the α-hemolysin pore to probe proteins at single-molec...
In recent years the application of single-molecule techniques to probe biomolecules and intermolecul...
Single molecule nanopore sensing is emerging as a powerful tool for probing the properties of indivi...
Abstract. The progress of molecular manipulation technology has made it possible to conduct controll...
The progress of molecular manipulation technology has made it possible to conduct controlled experim...
We thank Laurent Bacri for useful discussions and his expertise in data analysis. We thank Micayla B...
Nanopore based sensors constitute a promising approach to single molecule protein characterization b...
Nanopore sensing is attracting the attention of a large and varied scientific community. One of the ...
Nanopore sensing is attracting the attention of a large and varied scientific community. One of the ...
We study the translocation of the ubiquitin molecule (Ubq) across a channel with a double section wh...
Cells are divided into compartments and separated from the environment by lipid bilayer membranes. E...
Cells are divided into compartments and separated from the environment by lipid bilayer membranes. E...
AbstractNanopore translocation experiments are increasingly applied to probe the secondary structure...
Single molecule protein sequencing would represent a disruptive burst in proteomic research with imp...
The application of nanopore sensing utilizing the α-hemolysin pore to probe proteins at single-molec...
In recent years the application of single-molecule techniques to probe biomolecules and intermolecul...
Single molecule nanopore sensing is emerging as a powerful tool for probing the properties of indivi...
Abstract. The progress of molecular manipulation technology has made it possible to conduct controll...
The progress of molecular manipulation technology has made it possible to conduct controlled experim...
We thank Laurent Bacri for useful discussions and his expertise in data analysis. We thank Micayla B...