We present a theory for cooperative chiral order in the transition between right-handed B-DNA and left-handed Z-DNA. This theory, based on the random-field Ising model, predicts the characteristic length scale of Z-DNA segments. This length scale depends on whether the DNA is a homopolymer or a random sequence: it is approximately 4000 nucleotides in a homopolymer but only approximately 25 nucleotides in a random sequence. These theoretical results are consistent with experiments on DNA homopolymers and random sequences
AbstractDNA cyclization is potentially the most powerful approach for systematic quantitation of seq...
The study of special features of a new molecular DNA structure synthesis based on the fact that mono...
The twist, rise, slide, shift, tilt and roll between adjoining base pairs in DNA depend on the ident...
We present a theory for cooperative chiral order in the transition between right-handed B-DNA and le...
We present a theory for cooperative chiral order in the transition between right-handed B-DNA and le...
A new type of cooperative chiral order has been observed in polyisocyanates composed of a mixture of...
The complexity of the primary structure of human DNA is explored using methods from nonequilibrium s...
AbstractBoth in vivo and in vitro, specific sequences in double-stranded DNA can adopt the left-hand...
Under negative torsion, DNA adopts left-handed helical forms, such as Z-DNA and L-DNA. Using the ran...
Genomic sequences of DNA not only code for proteins, but also unique structural conformations encomp...
Concentrated solutions of duplex-forming DNA oligomers display various forms of liquid crystal order...
On the basis of CNDO-2 and MNDO quantumchemical calculations we suggest that direct generation of Pv...
AbstractThere have been numerous attempts to describe the mechanism of B-Z transition. Our simulatio...
This article discusses a dynamical model for DNA sequences based on the assumption that the statisti...
DNA actively interacts with proteins involved in replication, transcription, repair, and regulation ...
AbstractDNA cyclization is potentially the most powerful approach for systematic quantitation of seq...
The study of special features of a new molecular DNA structure synthesis based on the fact that mono...
The twist, rise, slide, shift, tilt and roll between adjoining base pairs in DNA depend on the ident...
We present a theory for cooperative chiral order in the transition between right-handed B-DNA and le...
We present a theory for cooperative chiral order in the transition between right-handed B-DNA and le...
A new type of cooperative chiral order has been observed in polyisocyanates composed of a mixture of...
The complexity of the primary structure of human DNA is explored using methods from nonequilibrium s...
AbstractBoth in vivo and in vitro, specific sequences in double-stranded DNA can adopt the left-hand...
Under negative torsion, DNA adopts left-handed helical forms, such as Z-DNA and L-DNA. Using the ran...
Genomic sequences of DNA not only code for proteins, but also unique structural conformations encomp...
Concentrated solutions of duplex-forming DNA oligomers display various forms of liquid crystal order...
On the basis of CNDO-2 and MNDO quantumchemical calculations we suggest that direct generation of Pv...
AbstractThere have been numerous attempts to describe the mechanism of B-Z transition. Our simulatio...
This article discusses a dynamical model for DNA sequences based on the assumption that the statisti...
DNA actively interacts with proteins involved in replication, transcription, repair, and regulation ...
AbstractDNA cyclization is potentially the most powerful approach for systematic quantitation of seq...
The study of special features of a new molecular DNA structure synthesis based on the fact that mono...
The twist, rise, slide, shift, tilt and roll between adjoining base pairs in DNA depend on the ident...