SummaryAptamers, short RNA or DNA molecules that bind distinct targets with high affinity and specificity, can be identified using high-throughput systematic evolution of ligands by exponential enrichment (HT-SELEX), but scalable analytic tools for understanding sequence-function relationships from diverse HT-SELEX data are not available. Here we present AptaTRACE, a computational approach that leverages the experimental design of the HT-SELEX protocol, RNA secondary structure, and the potential presence of many secondary motifs to identify sequence-structure motifs that show a signature of selection. We apply AptaTRACE to identify nine motifs in C-C chemokine receptor type 7 targeted by aptamers in an in vitro cell-SELEX experiment. We exp...
Laboratory-evolved RNAs bind a wide variety of targets and serve highly diverse functions, including...
Aptamers are an emerging class of molecules that are valued for their ability to bind with high affi...
Laboratory-evolved RNAs bind a wide variety of targets and serve highly diverse functions, including...
SummaryAptamers, short RNA or DNA molecules that bind distinct targets with high affinity and specif...
Aptamers, short RNA or DNA molecules that bind distinct targets with high affinity and specificity, ...
Nucleic acid aptamer selection by systematic evolu-tion of ligands by exponential enrichment (SELEX)...
Aptamers are short oligonucleotide sequences capable of specific, high-affinity binding. Given this ...
Aptamers are functional oligonucleotides that are discovered through directed evolution. With affini...
Background SELEX is an iterative process in which highly diverse synthetic nucleic acid libraries ar...
Aptamers are discovered from random oligonucleotide libraries by an in vitro selection process, u...
The systematic evolution of ligands by exponential enrichment (SELEX) is a powerful method for the d...
The identification of nucleic acid aptamers would be advanced if they could be obtained after fewer ...
Aptamers are synthetic nucleic acid molecules that can bind biological targets in virtue of both the...
The systemic evolution of ligands by exponential enrichment (SELEX) technique is a powerful and effe...
selection tool to analyze the structure of ligand-binding nucleic acid sequences called aptamers. G...
Laboratory-evolved RNAs bind a wide variety of targets and serve highly diverse functions, including...
Aptamers are an emerging class of molecules that are valued for their ability to bind with high affi...
Laboratory-evolved RNAs bind a wide variety of targets and serve highly diverse functions, including...
SummaryAptamers, short RNA or DNA molecules that bind distinct targets with high affinity and specif...
Aptamers, short RNA or DNA molecules that bind distinct targets with high affinity and specificity, ...
Nucleic acid aptamer selection by systematic evolu-tion of ligands by exponential enrichment (SELEX)...
Aptamers are short oligonucleotide sequences capable of specific, high-affinity binding. Given this ...
Aptamers are functional oligonucleotides that are discovered through directed evolution. With affini...
Background SELEX is an iterative process in which highly diverse synthetic nucleic acid libraries ar...
Aptamers are discovered from random oligonucleotide libraries by an in vitro selection process, u...
The systematic evolution of ligands by exponential enrichment (SELEX) is a powerful method for the d...
The identification of nucleic acid aptamers would be advanced if they could be obtained after fewer ...
Aptamers are synthetic nucleic acid molecules that can bind biological targets in virtue of both the...
The systemic evolution of ligands by exponential enrichment (SELEX) technique is a powerful and effe...
selection tool to analyze the structure of ligand-binding nucleic acid sequences called aptamers. G...
Laboratory-evolved RNAs bind a wide variety of targets and serve highly diverse functions, including...
Aptamers are an emerging class of molecules that are valued for their ability to bind with high affi...
Laboratory-evolved RNAs bind a wide variety of targets and serve highly diverse functions, including...