We introduce a coarse-grained rigid nucleotide model of DNA that reproduces the basic thermodynamics of short strands, duplex hybridization, single-stranded stacking, and hairpin formation, and also captures the essential structural properties of DNA: the helical pitch, persistence length, and torsional stiffness of double-stranded molecules, as well as the comparative flexibility of unstacked single strands. We apply the model to calculate the detailed free-energy landscape of one full cycle of DNA "tweezers," a simple machine driven by hybridization and strand displacement
The self-assembly properties of DNA make it an ideal choice for the construction of nanomachines suc...
We introduce a sequence-dependent parametrization for a coarse-grained DNA model [T. E. Ouldridge, A...
We introduce a sequence-dependent parametrization for a coarse-grained DNA model [T. E. Ouldridge, A...
We explore in detail the structural, mechanical, and thermodynamic properties of a coarse-grained mo...
This thesis considers coarse-grained models of DNA and RNA, developed in particular to study nanotec...
To simulate long time and length scale processes involving DNA it is necessary to use a coarse-grain...
ABSTRACT: A simple coarse-grained model of single-stranded DNA (ssDNA) was developed, featuring only...
To simulate long time and length scale processes involving DNA it is necessary to use a coarse-grain...
A coarse-grained model for DNA that is intended to function realistically at the level of individual...
We use basic statistical mechanics and computer simulations with coarse-grained models to investigat...
A purely DNA nanomachine must support internal stresses across short DNA segments with finite rigidi...
To simulate long time and length scale processes involving DNA it is necessary to use a coarse-grain...
We apply a recently-developed coarse-grained model of DNA, designed to capture the basic physics of ...
The profound simplicity and versatility of the molecule at the heart of all earth- bound life forms,...
<div><p>Single-molecule tweezers measurements of double-stranded nucleic acids (dsDNA and dsRNA) pro...
The self-assembly properties of DNA make it an ideal choice for the construction of nanomachines suc...
We introduce a sequence-dependent parametrization for a coarse-grained DNA model [T. E. Ouldridge, A...
We introduce a sequence-dependent parametrization for a coarse-grained DNA model [T. E. Ouldridge, A...
We explore in detail the structural, mechanical, and thermodynamic properties of a coarse-grained mo...
This thesis considers coarse-grained models of DNA and RNA, developed in particular to study nanotec...
To simulate long time and length scale processes involving DNA it is necessary to use a coarse-grain...
ABSTRACT: A simple coarse-grained model of single-stranded DNA (ssDNA) was developed, featuring only...
To simulate long time and length scale processes involving DNA it is necessary to use a coarse-grain...
A coarse-grained model for DNA that is intended to function realistically at the level of individual...
We use basic statistical mechanics and computer simulations with coarse-grained models to investigat...
A purely DNA nanomachine must support internal stresses across short DNA segments with finite rigidi...
To simulate long time and length scale processes involving DNA it is necessary to use a coarse-grain...
We apply a recently-developed coarse-grained model of DNA, designed to capture the basic physics of ...
The profound simplicity and versatility of the molecule at the heart of all earth- bound life forms,...
<div><p>Single-molecule tweezers measurements of double-stranded nucleic acids (dsDNA and dsRNA) pro...
The self-assembly properties of DNA make it an ideal choice for the construction of nanomachines suc...
We introduce a sequence-dependent parametrization for a coarse-grained DNA model [T. E. Ouldridge, A...
We introduce a sequence-dependent parametrization for a coarse-grained DNA model [T. E. Ouldridge, A...