Recent development of single-molecule manipulation technologies has made it possible to exert constant force and torque on individual DNA biopolymers to probe their elastic characteristics and structural stability. It has been previously shown that depending on the nature of applied mechanical constraints, DNA can exist in several forms including B-, L- and P-DNA. However, there is still a lack of understanding in how structural heterogeneity of DNA, which may naturally arise due to sequence-dependent DNA properties, protein binding or DNA damage, influence local stability of the above DNA states. To provide a more complete and detailed description of the DNA mechanics, we developed a theoretical framework based on transfer-matrix calculati...
This chapter discusses single-molecule studies of Deoxyribonucleic Acid (DNA) mechanics and DNA/prot...
Abstract: We have used internal coordinate molecular mechanics calculations to study how the DNA dou...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...
Recent progress in single-molecule manipulation technologies has made it possible to exert force and...
DNA dynamics can only be understood by taking into account its complex mechanical behavior at differ...
Biological processes manipulating DNA test its physical properties. Atomistic molecular dynamics sim...
In this thesis, the response of DNA and RNA to linear and torsional mechanical stress is studied usi...
The central focus of this thesis is the study of DNA, a biological molecule of paramount significanc...
Abstract. The theory of the mechanical response of single DNA molecules un-der stretching and twisti...
In cells, DNA is constantly twisted, bent and stretched by numerous proteins mediating genome transa...
Abstract. The theory of the mechanical response of single DNA molecules un-der stretching and twisti...
Mechanical properties of DNA are known to play a significant role in several biological processes li...
Mechanical properties of DNA are known to play a significant role in several biological processes li...
In the last decade, methods to study single DNA molecules under tensile load have been developed. Th...
AbstractAdvances in nanomanipulation techniques have made it possible to measure the response of an ...
This chapter discusses single-molecule studies of Deoxyribonucleic Acid (DNA) mechanics and DNA/prot...
Abstract: We have used internal coordinate molecular mechanics calculations to study how the DNA dou...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...
Recent progress in single-molecule manipulation technologies has made it possible to exert force and...
DNA dynamics can only be understood by taking into account its complex mechanical behavior at differ...
Biological processes manipulating DNA test its physical properties. Atomistic molecular dynamics sim...
In this thesis, the response of DNA and RNA to linear and torsional mechanical stress is studied usi...
The central focus of this thesis is the study of DNA, a biological molecule of paramount significanc...
Abstract. The theory of the mechanical response of single DNA molecules un-der stretching and twisti...
In cells, DNA is constantly twisted, bent and stretched by numerous proteins mediating genome transa...
Abstract. The theory of the mechanical response of single DNA molecules un-der stretching and twisti...
Mechanical properties of DNA are known to play a significant role in several biological processes li...
Mechanical properties of DNA are known to play a significant role in several biological processes li...
In the last decade, methods to study single DNA molecules under tensile load have been developed. Th...
AbstractAdvances in nanomanipulation techniques have made it possible to measure the response of an ...
This chapter discusses single-molecule studies of Deoxyribonucleic Acid (DNA) mechanics and DNA/prot...
Abstract: We have used internal coordinate molecular mechanics calculations to study how the DNA dou...
DNA is a double stranded helical molecule with an intrinsic right handed twist. Its structure can be...