The denaturation of the double helix is a template for fundamental biological functions such as replication and transcription involving the formation of local fluctuational openings. The denaturation transition is studied for heterogeneous short sequences of DNA, i.e. $\sim 100$ base pairs, in the framework of a mesoscopic Hamiltonian model which accounts for the helicoidal geometry of the molecule. The theoretical background for the application of the path integral formalism to predictive analysis of the molecule thermodynamical properties is discussed. The base pair displacements with respect to the ground state are treated as paths whose temperature dependent amplitudes are governed by the thermal wavelength. The ensemble of base pairs p...
The full text is available at: http://arxiv.org/PS_cache/cond-mat/pdf/0309/0309454v1.pdfThis is also...
We propose a dynamical model for the secondary structure of DNA, which is based on the finite stacki...
We present a nonlinear dynamical model for DNA thermal denaturation, which is based on the finite st...
The denaturation of the double helix is a template for fundamental biological functions such as repl...
The denaturation of the double helix is a template for fundamental biological functions such as repl...
The thermodynamical properties of heterogeneous DNA sequences are computed by path-integral techniqu...
Multistep denaturation in a short circular DNA molecule is analyzed by a mesoscopic Hamiltonian mode...
A mesoscopic model for heterogeneous DNA denaturation is developed in the framework of the path inte...
A mesoscopic model for heterogeneous DNA denaturation is developed in the framework of the path inte...
Multistep denaturation in a short circular DNA molecule is analyzed by a mesoscopic Hamiltonian mode...
The imaginary time path integral formalism is applied to a nonlinear Hamiltonian for a short fragmen...
The imaginary time path integral formalism is applied to a nonlinear Hamiltonian for a short fragmen...
Complementary strands in DNA double helix show temporary fluctuational openings which are essential ...
Complementary strands in DNA double helix show temporary fluctuational openings which are essential ...
Single molecule DNA experiments provide interesting data that allow a better understanding of the me...
The full text is available at: http://arxiv.org/PS_cache/cond-mat/pdf/0309/0309454v1.pdfThis is also...
We propose a dynamical model for the secondary structure of DNA, which is based on the finite stacki...
We present a nonlinear dynamical model for DNA thermal denaturation, which is based on the finite st...
The denaturation of the double helix is a template for fundamental biological functions such as repl...
The denaturation of the double helix is a template for fundamental biological functions such as repl...
The thermodynamical properties of heterogeneous DNA sequences are computed by path-integral techniqu...
Multistep denaturation in a short circular DNA molecule is analyzed by a mesoscopic Hamiltonian mode...
A mesoscopic model for heterogeneous DNA denaturation is developed in the framework of the path inte...
A mesoscopic model for heterogeneous DNA denaturation is developed in the framework of the path inte...
Multistep denaturation in a short circular DNA molecule is analyzed by a mesoscopic Hamiltonian mode...
The imaginary time path integral formalism is applied to a nonlinear Hamiltonian for a short fragmen...
The imaginary time path integral formalism is applied to a nonlinear Hamiltonian for a short fragmen...
Complementary strands in DNA double helix show temporary fluctuational openings which are essential ...
Complementary strands in DNA double helix show temporary fluctuational openings which are essential ...
Single molecule DNA experiments provide interesting data that allow a better understanding of the me...
The full text is available at: http://arxiv.org/PS_cache/cond-mat/pdf/0309/0309454v1.pdfThis is also...
We propose a dynamical model for the secondary structure of DNA, which is based on the finite stacki...
We present a nonlinear dynamical model for DNA thermal denaturation, which is based on the finite st...