In contrast to sophisticated high-throughput sequencing tools for genomic DNA, analytical tools for comparing secondary structure features between multiple single-stranded DNA sequences are less developed. For single-stranded nucleic acid ligands called aptamers, secondary structure is widely thought to play a pivotal role in driving recognition-based binding activity between an aptamer sequence and its specific target. Here, we employ a competition-based aptamer screening platform called CompELS to identify DNA aptamers for a colloidal target. We then analyze predicted secondary structures of the aptamers and a large population of random sequences to identify sequence features and patterns. Our secondary structure analysis identifies patte...
Aptamers consist of short oligonucleotides that bind specific targets. They provide advantages over ...
[EMBARGOED UNTIL 6/1/2023] Nucleic acid aptamers are single-stranded oligonucleotides that fold into...
We describe the integration of microfluidic selection with high-throughput DNA sequencing technology...
Aptamers are single stranded RNA or DNA oligonucleotides with high affinity and specificity for a pa...
Competition-enhanced ligand screening (CompELS) was employed to rapidly screen through large DNA lib...
Aptamers are small, functional nucleic acids that bind a variety of targets, often with high specifi...
Computer-aided prediction of aptamer sequences has been focused on primary sequence alignment and mo...
Aptamers, short RNA or DNA molecules that bind distinct targets with high affinity and specificity, ...
AbstractBackground: Structural studies by nuclear magnetic resonance (NMR) of RNA and DNA aptamer co...
Summary: Here we present APTANI2, an expanded and optimized version of APTANI, a computational tool ...
SummaryAptamers, short RNA or DNA molecules that bind distinct targets with high affinity and specif...
The <i>in vitro</i> selection of nucleic acid libraries has driven the discovery of RNA and DNA rece...
<p>The DNA sequences of AptLiH2A#1 and AptLiH2A#2 were analyzed using ‘mFold’ software. The resultan...
Aptamers are short oligonucleotides that possess high specificity and affinity against their target....
DNA sequences that can bind selectively and specifically to target molecules are known as aptamers. ...
Aptamers consist of short oligonucleotides that bind specific targets. They provide advantages over ...
[EMBARGOED UNTIL 6/1/2023] Nucleic acid aptamers are single-stranded oligonucleotides that fold into...
We describe the integration of microfluidic selection with high-throughput DNA sequencing technology...
Aptamers are single stranded RNA or DNA oligonucleotides with high affinity and specificity for a pa...
Competition-enhanced ligand screening (CompELS) was employed to rapidly screen through large DNA lib...
Aptamers are small, functional nucleic acids that bind a variety of targets, often with high specifi...
Computer-aided prediction of aptamer sequences has been focused on primary sequence alignment and mo...
Aptamers, short RNA or DNA molecules that bind distinct targets with high affinity and specificity, ...
AbstractBackground: Structural studies by nuclear magnetic resonance (NMR) of RNA and DNA aptamer co...
Summary: Here we present APTANI2, an expanded and optimized version of APTANI, a computational tool ...
SummaryAptamers, short RNA or DNA molecules that bind distinct targets with high affinity and specif...
The <i>in vitro</i> selection of nucleic acid libraries has driven the discovery of RNA and DNA rece...
<p>The DNA sequences of AptLiH2A#1 and AptLiH2A#2 were analyzed using ‘mFold’ software. The resultan...
Aptamers are short oligonucleotides that possess high specificity and affinity against their target....
DNA sequences that can bind selectively and specifically to target molecules are known as aptamers. ...
Aptamers consist of short oligonucleotides that bind specific targets. They provide advantages over ...
[EMBARGOED UNTIL 6/1/2023] Nucleic acid aptamers are single-stranded oligonucleotides that fold into...
We describe the integration of microfluidic selection with high-throughput DNA sequencing technology...