RNA secondary structures of increasing complexity are probed combining single molecule stretching experiments and stochastic unfolding/refolding simulations. We find that force-induced unfolding pathways cannot usually be interpreted by solely invoking successive openings of native helices. Indeed, typical force-extension responses of complex RNA molecules are largely shaped by stretching-induced, long-lived intermediates including non-native helices. This is first shown for a set of generic structural motifs found in larger RNA structures, and then for Escherichia coli’s 1540-base long 16S ribosomal RNA, which exhibits a surprisingly well-structured and reproducible unfolding pathway under mechanical stretching. Using out-of-equilibrium st...
ABSTRACT: Noncoding RNA sequences play a great role in controlling a number of cellular functions, t...
Abstract. A double-tweezer setup is used to induce mechanical stress in systems of molecular biology...
AbstractUsing polymer elastic theory and known RNA free energies, we construct a Monte Carlo algorit...
ABSTRACT We study theoretically the denaturation of single RNA molecules by mechanical stretching, f...
ABSTRACTWe study theoretically the denaturation of single RNA molecules by mechanical stretching, fo...
AbstractMechanical unfolding of RNA structures, ranging from hairpins to ribozymes, using laser opti...
AbstractNanomanipulation of individual RNA molecules, using laser optical tweezers, has made it poss...
ABSTRACT Nanomanipulation of individual RNA molecules, using laser optical tweezers, has made it pos...
RNA folding is a kinetic process governed by the competition of a large number of structures stabili...
ABSTRACT Mechanical unfolding of RNA structures, ranging from hairpins to ribozymes, using laser opt...
AbstractMechanical unfolding and refolding of single RNA molecules have previously been observed in ...
Using force as a probe to map the folding landscapes of RNA molecules has become a reality thanks to...
Mechanical unfolding studies on Ribonucleic Acid (RNA) structures are a subject of tremendous intere...
A double-tweezer setup is used to induce mechanical stress in systems of molecular biology. A double...
AbstractWe develop a continue time Monte Carlo algorithm to simulate single RNAs unfolded by a time-...
ABSTRACT: Noncoding RNA sequences play a great role in controlling a number of cellular functions, t...
Abstract. A double-tweezer setup is used to induce mechanical stress in systems of molecular biology...
AbstractUsing polymer elastic theory and known RNA free energies, we construct a Monte Carlo algorit...
ABSTRACT We study theoretically the denaturation of single RNA molecules by mechanical stretching, f...
ABSTRACTWe study theoretically the denaturation of single RNA molecules by mechanical stretching, fo...
AbstractMechanical unfolding of RNA structures, ranging from hairpins to ribozymes, using laser opti...
AbstractNanomanipulation of individual RNA molecules, using laser optical tweezers, has made it poss...
ABSTRACT Nanomanipulation of individual RNA molecules, using laser optical tweezers, has made it pos...
RNA folding is a kinetic process governed by the competition of a large number of structures stabili...
ABSTRACT Mechanical unfolding of RNA structures, ranging from hairpins to ribozymes, using laser opt...
AbstractMechanical unfolding and refolding of single RNA molecules have previously been observed in ...
Using force as a probe to map the folding landscapes of RNA molecules has become a reality thanks to...
Mechanical unfolding studies on Ribonucleic Acid (RNA) structures are a subject of tremendous intere...
A double-tweezer setup is used to induce mechanical stress in systems of molecular biology. A double...
AbstractWe develop a continue time Monte Carlo algorithm to simulate single RNAs unfolded by a time-...
ABSTRACT: Noncoding RNA sequences play a great role in controlling a number of cellular functions, t...
Abstract. A double-tweezer setup is used to induce mechanical stress in systems of molecular biology...
AbstractUsing polymer elastic theory and known RNA free energies, we construct a Monte Carlo algorit...