RNAs are emerging as important biomarkers and therapeutic targets. The strategy of directly targeting double-stranded RNA (dsRNA) by triplex-formation is relatively underexplored mainly due to the weak binding at physiological conditions for the traditional triplex-forming oligonucleotides (TFOs). Compared to DNA and RNA, peptide nucleic acids (PNAs) are chemically stable and have a neutral peptide-like backbone, and thus, they show significantly enhanced binding to natural nucleic acids. We have successfully developed nucleobase-modified dsRNA-binding PNAs (dbPNAs) to facilitate structure-specific and selective recognition of dsRNA over single-stranded RNA (ssRNA) and dsDNA regions at near-physiological conditions. The triplex formation st...
Part I: Targeting RNA Duplexes with Modified Triplex-Forming Oligonucleotides Triplex is emerging as...
The diverse biological functions of RNA are determined by the complex structures of RNA stabilized b...
Peptide nucleic acids (PNAs) have been developed for applications in biotechnology and therapeutics....
The structures of RNAs determine their functions including protein coding, catalysis, and gene regul...
Double-stranded RNA (dsRNA) structures form triplexes and RNA-protein complexes through binding to s...
Double-stranded RNA (dsRNA) structures form triplexes and RNA-protein complexes through binding to s...
RNAs play critical roles in diverse catalytic and regulatory biological processes and are emerging a...
Chemically modified peptide nucleic acids (PNAs) show great promise in the recognition of RNA duplex...
Peptide nucleic acids (PNAs) have been developed as chemical probes and therapeutic ligands in RNA d...
Research has uncovered previously unknown roles for non-coding RNA as enzymes, gene regulators, and ...
The majority of information known about RNA is centered around coding RNA for its role in synthesizi...
We have developed a new fluorescent sensing probe for double-stranded RNA (dsRNA) by integrating thi...
Double-helical RNA has become an attractive target for molecular recognition because many noncoding ...
Part I: Targeting RNA Duplexes with Modified Triplex-Forming Oligonucleotides Triplex is emerging as...
Conjugation of short peptide nucleic acids (PNA) with tetralysine peptides strongly enhanced triple ...
Part I: Targeting RNA Duplexes with Modified Triplex-Forming Oligonucleotides Triplex is emerging as...
The diverse biological functions of RNA are determined by the complex structures of RNA stabilized b...
Peptide nucleic acids (PNAs) have been developed for applications in biotechnology and therapeutics....
The structures of RNAs determine their functions including protein coding, catalysis, and gene regul...
Double-stranded RNA (dsRNA) structures form triplexes and RNA-protein complexes through binding to s...
Double-stranded RNA (dsRNA) structures form triplexes and RNA-protein complexes through binding to s...
RNAs play critical roles in diverse catalytic and regulatory biological processes and are emerging a...
Chemically modified peptide nucleic acids (PNAs) show great promise in the recognition of RNA duplex...
Peptide nucleic acids (PNAs) have been developed as chemical probes and therapeutic ligands in RNA d...
Research has uncovered previously unknown roles for non-coding RNA as enzymes, gene regulators, and ...
The majority of information known about RNA is centered around coding RNA for its role in synthesizi...
We have developed a new fluorescent sensing probe for double-stranded RNA (dsRNA) by integrating thi...
Double-helical RNA has become an attractive target for molecular recognition because many noncoding ...
Part I: Targeting RNA Duplexes with Modified Triplex-Forming Oligonucleotides Triplex is emerging as...
Conjugation of short peptide nucleic acids (PNA) with tetralysine peptides strongly enhanced triple ...
Part I: Targeting RNA Duplexes with Modified Triplex-Forming Oligonucleotides Triplex is emerging as...
The diverse biological functions of RNA are determined by the complex structures of RNA stabilized b...
Peptide nucleic acids (PNAs) have been developed for applications in biotechnology and therapeutics....