AbstractNanopore translocation experiments are increasingly applied to probe the secondary structures of RNA and DNA molecules. Here, we report two vital steps toward establishing nanopore translocation as a tool for the systematic and quantitative analysis of polynucleotide folding: 1), Using α-hemolysin pores and a diverse set of different DNA hairpins, we demonstrate that backward nanopore force spectroscopy is particularly well suited for quantitative analysis. In contrast to forward translocation from the vestibule side of the pore, backward translocation times do not appear to be significantly affected by pore-DNA interactions. 2), We develop and verify experimentally a versatile mesoscopic theoretical framework for the quantitative a...
Next generation DNA sequencing methods that utilize protein nanopores have the potential to revoluti...
AbstractEngineered protein nanopores, such as those based on α-hemolysin from Staphylococcus aureus ...
Nanopore technology for DNA sequencing is constantly being refined and improved. In strand sequencin...
AbstractNanopore translocation experiments are increasingly applied to probe the secondary structure...
Single molecule nanopore sensing is emerging as a powerful tool for probing the properties of indivi...
Protein nanopores show great potential as low-cost detectors in DNA sequencing devices. To date, res...
We investigate the dynamics of DNA translocation through a nanopore using 2D Langevin dynamics simul...
We present a detailed description of biopolymer translocation through a nanopore in the presence of ...
Engineered protein nanopores, such as those based on ?-hemolysin from Staphylococcus aureus have sho...
The progress of molecular manipulation technology has made it possible to conduct controlled experim...
Abstract. The progress of molecular manipulation technology has made it possible to conduct controll...
We investigate the dynamics of DNA translocation through a nanopore using 2D Langevin dynamics simul...
ABSTRACT: The interest in polynucleotide translocation through nanopores has moved from purely biolo...
Nanopore based sensors constitute a promising approach to single molecule protein characterization b...
The translocation of structured RNA or DNA molecules through narrow pores necessitates the opening o...
Next generation DNA sequencing methods that utilize protein nanopores have the potential to revoluti...
AbstractEngineered protein nanopores, such as those based on α-hemolysin from Staphylococcus aureus ...
Nanopore technology for DNA sequencing is constantly being refined and improved. In strand sequencin...
AbstractNanopore translocation experiments are increasingly applied to probe the secondary structure...
Single molecule nanopore sensing is emerging as a powerful tool for probing the properties of indivi...
Protein nanopores show great potential as low-cost detectors in DNA sequencing devices. To date, res...
We investigate the dynamics of DNA translocation through a nanopore using 2D Langevin dynamics simul...
We present a detailed description of biopolymer translocation through a nanopore in the presence of ...
Engineered protein nanopores, such as those based on ?-hemolysin from Staphylococcus aureus have sho...
The progress of molecular manipulation technology has made it possible to conduct controlled experim...
Abstract. The progress of molecular manipulation technology has made it possible to conduct controll...
We investigate the dynamics of DNA translocation through a nanopore using 2D Langevin dynamics simul...
ABSTRACT: The interest in polynucleotide translocation through nanopores has moved from purely biolo...
Nanopore based sensors constitute a promising approach to single molecule protein characterization b...
The translocation of structured RNA or DNA molecules through narrow pores necessitates the opening o...
Next generation DNA sequencing methods that utilize protein nanopores have the potential to revoluti...
AbstractEngineered protein nanopores, such as those based on α-hemolysin from Staphylococcus aureus ...
Nanopore technology for DNA sequencing is constantly being refined and improved. In strand sequencin...