In nanopore sensing experiments, the properties of molecules are probed by the variation of ionic currents flowing through the nanopore. In this context, the electronic properties and the single-layer thickness of graphene constitute a major advantage for molecule characterization. Here we analyze the translocation pathway of the thioredoxin protein across a graphene nanopore, and the related ionic currents, by integrating two nonequilibrium molecular dynamics methods with a bioinformatic structural analysis. To obtain a qualitative picture of the translocation process and to identify salient features we performed unsupervised structural clustering on translocation conformations. This allowed us to identify some specific and robust transloc...
Successfully threading unfolded protein molecules through nanopores whose sizes are comparable to th...
Protein nanopores show great potential as low-cost detectors in DNA sequencing devices. To date, res...
Nanopore-based single-molecule detection and analysis have been pursued intensively over the past de...
In nanopore sensing experiments, the properties of molecules are probed by the variation of ionic cu...
ABSTRACT: In nanopore sensing experiments, the properties of molecules are probed by the variation o...
Nanopore sensing is attracting the attention of a large and varied scientific community. One of the ...
Graphene nanopore has been promising the ultra-high resolution for DNA sequencing due to the atomic ...
Single-molecule protein sequencing is essential for a wide range of research and application fields,...
Nanopore sensing is attracting the attention of a large and varied scientific community. One of the ...
Detecting conformational change in protein or peptide is imperative in understanding their dynamic f...
Studies of DNA translocation through graphene nanopores have revealed their potential for DNA sequen...
Using all-atom molecular dynamics and atomic-resolution Brownian dynamics, we simulate the transloca...
Graphene nanopore based sensor devices have shown great potential for the detection of DNA. To under...
We investigate by means of molecular dynamics simulations stretch-induced stepwise translocation of ...
Successfully threading unfolded protein molecules through nanopores whose sizes are comparable to th...
Protein nanopores show great potential as low-cost detectors in DNA sequencing devices. To date, res...
Nanopore-based single-molecule detection and analysis have been pursued intensively over the past de...
In nanopore sensing experiments, the properties of molecules are probed by the variation of ionic cu...
ABSTRACT: In nanopore sensing experiments, the properties of molecules are probed by the variation o...
Nanopore sensing is attracting the attention of a large and varied scientific community. One of the ...
Graphene nanopore has been promising the ultra-high resolution for DNA sequencing due to the atomic ...
Single-molecule protein sequencing is essential for a wide range of research and application fields,...
Nanopore sensing is attracting the attention of a large and varied scientific community. One of the ...
Detecting conformational change in protein or peptide is imperative in understanding their dynamic f...
Studies of DNA translocation through graphene nanopores have revealed their potential for DNA sequen...
Using all-atom molecular dynamics and atomic-resolution Brownian dynamics, we simulate the transloca...
Graphene nanopore based sensor devices have shown great potential for the detection of DNA. To under...
We investigate by means of molecular dynamics simulations stretch-induced stepwise translocation of ...
Successfully threading unfolded protein molecules through nanopores whose sizes are comparable to th...
Protein nanopores show great potential as low-cost detectors in DNA sequencing devices. To date, res...
Nanopore-based single-molecule detection and analysis have been pursued intensively over the past de...