Understanding the folding mechanism of RNAs is critical for studying their structure-function relationship. The folding energy landscape of RNA is often rugged, involving multiple folding routes and intermediates. Optical tweezers is a powerful tool to study the folding of RNA, as it enables direct investigation of single RNA molecules and their folding pathways. In this dissertation, I used optical tweezers to investigate the folding of two RNA structural motifs, a hairpin and a pseudoknot. RNA hairpin, the A-form double helix capped with a terminal loop, is a basic RNA secondary structure. I examined a model RNA hairpin, P5ab, derived from the group I intron ribozyme. P5ab was only considered as a two-state folder in previous single-molec...
ABSTRACT: Noncoding RNA sequences play a great role in controlling a number of cellular functions, t...
ABSTRACT Mechanical unfolding of RNA structures, ranging from hairpins to ribozymes, using laser opt...
There is little experimental knowledge on the sequence dependent rate of hairpin formation in RNA. W...
Folding messenger RNA into specific structures is a common regulatory mechanism involved in trans-la...
The vital role of RNA structure and dynamics in determining biological function is increasingly appr...
The folding of a small RNA tetraloop hairpin is studied based on intensive molecular dynamics simula...
ABSTRACT: Hairpin secondary structural elements play important roles in the folding and function of ...
Ribonucleic acids (RNAs) are a group of functional biopolymers central to the molecular underpinning...
The functions of RNA pseudoknots (PKs), which are minimal tertiary structural motifs and an integral...
AbstractMechanical unfolding of RNA structures, ranging from hairpins to ribozymes, using laser opti...
We report a set of atomistic folding/unfolding simulations for the hairpin ribozyme using a monte ca...
Mechanical unfolding studies on Ribonucleic Acid (RNA) structures are a subject of tremendous intere...
The functions of RNA pseudoknots (PKs), which are minimal tertiary structural motifs and an integral...
AbstractThe complexity of RNA hairpin folding arises from the interplay between the loop formation, ...
In a recent issue of Science, Greenleaf et al. (2008) report single-molecule force measurements to e...
ABSTRACT: Noncoding RNA sequences play a great role in controlling a number of cellular functions, t...
ABSTRACT Mechanical unfolding of RNA structures, ranging from hairpins to ribozymes, using laser opt...
There is little experimental knowledge on the sequence dependent rate of hairpin formation in RNA. W...
Folding messenger RNA into specific structures is a common regulatory mechanism involved in trans-la...
The vital role of RNA structure and dynamics in determining biological function is increasingly appr...
The folding of a small RNA tetraloop hairpin is studied based on intensive molecular dynamics simula...
ABSTRACT: Hairpin secondary structural elements play important roles in the folding and function of ...
Ribonucleic acids (RNAs) are a group of functional biopolymers central to the molecular underpinning...
The functions of RNA pseudoknots (PKs), which are minimal tertiary structural motifs and an integral...
AbstractMechanical unfolding of RNA structures, ranging from hairpins to ribozymes, using laser opti...
We report a set of atomistic folding/unfolding simulations for the hairpin ribozyme using a monte ca...
Mechanical unfolding studies on Ribonucleic Acid (RNA) structures are a subject of tremendous intere...
The functions of RNA pseudoknots (PKs), which are minimal tertiary structural motifs and an integral...
AbstractThe complexity of RNA hairpin folding arises from the interplay between the loop formation, ...
In a recent issue of Science, Greenleaf et al. (2008) report single-molecule force measurements to e...
ABSTRACT: Noncoding RNA sequences play a great role in controlling a number of cellular functions, t...
ABSTRACT Mechanical unfolding of RNA structures, ranging from hairpins to ribozymes, using laser opt...
There is little experimental knowledge on the sequence dependent rate of hairpin formation in RNA. W...