The rotation diffusion of DNA double helices and their complexes with the cAMP receptor protein (CRP) has been simulated by bead models, in order to derive information on their structure in solution by comparison with results obtained from dichroism decay measurements. Straight DNA double helices are simulated by linear, rigid strings of overlapping beads. The radius of the beads and the length of the string are increased simultaneously by the same increments from initial outer dimensions derived from crystallographic data to final values, which are fitted to experimental rotation time constants observed for short DNA fragments (< 100 bp). The final values reflect the solvated structure with the same ‘solvation layer’ added in all three dim...
We propose a partially flexible, double-helical model for describing the conformational and dynamic ...
The Lac repressor is the classic textbook example of a protein that attaches to widely spaced sites ...
There are many challenges involved in the simulation of DNA. In this work, novel Monte Carlo techniq...
The rotation diffusion of DNA double helices and their complexes with the cAMP receptor protein (CRP...
AbstractDNA bending is assumed to play a crucial role during recognition of the cAMP-responsive elem...
AbstractDNA bending is assumed to play a crucial role during recognition of the cAMP-responsive elem...
ABSTRACT A crucial element of many gene functions is protein-induced DNA bending. Computer-generated...
AbstractA crucial element of many gene functions is protein-induced DNA bending. Computer-generated ...
AbstractThe origin of DNA axis curvature in complexes of the catabolite activator protein with DNA i...
In a process known as facilitated diffusion, DNA-binding proteins find their target sites by combini...
AbstractThe origin of DNA axis curvature in complexes of the catabolite activator protein with DNA i...
In a process known as facilitated diffusion, DNA-binding proteins find their target sites by combini...
The physical configuration of double-stranded DNA plays a significant role in the protection and exp...
AbstractA crucial element of many gene functions is protein-induced DNA bending. Computer-generated ...
The Lac repressor is the classic textbook example of a protein that attaches to widely spaced sites ...
We propose a partially flexible, double-helical model for describing the conformational and dynamic ...
The Lac repressor is the classic textbook example of a protein that attaches to widely spaced sites ...
There are many challenges involved in the simulation of DNA. In this work, novel Monte Carlo techniq...
The rotation diffusion of DNA double helices and their complexes with the cAMP receptor protein (CRP...
AbstractDNA bending is assumed to play a crucial role during recognition of the cAMP-responsive elem...
AbstractDNA bending is assumed to play a crucial role during recognition of the cAMP-responsive elem...
ABSTRACT A crucial element of many gene functions is protein-induced DNA bending. Computer-generated...
AbstractA crucial element of many gene functions is protein-induced DNA bending. Computer-generated ...
AbstractThe origin of DNA axis curvature in complexes of the catabolite activator protein with DNA i...
In a process known as facilitated diffusion, DNA-binding proteins find their target sites by combini...
AbstractThe origin of DNA axis curvature in complexes of the catabolite activator protein with DNA i...
In a process known as facilitated diffusion, DNA-binding proteins find their target sites by combini...
The physical configuration of double-stranded DNA plays a significant role in the protection and exp...
AbstractA crucial element of many gene functions is protein-induced DNA bending. Computer-generated ...
The Lac repressor is the classic textbook example of a protein that attaches to widely spaced sites ...
We propose a partially flexible, double-helical model for describing the conformational and dynamic ...
The Lac repressor is the classic textbook example of a protein that attaches to widely spaced sites ...
There are many challenges involved in the simulation of DNA. In this work, novel Monte Carlo techniq...