OligoArray 2.0: design of oligonucleotide probes for DNA microarrays using a thermodynamic approach
Top Cited Papers
Open Access
- 15 June 2003
- journal article
- research article
- Published by Oxford University Press (OUP) in Nucleic Acids Research
- Vol. 31 (12) , 3057-3062
- https://doi.org/10.1093/nar/gkg426
Abstract
There is a substantial interest in implementing bioinformatics technologies that allow the design of oligonucleotides to support the development of microarrays made from short synthetic DNA fragments spotted or in situ synthesized on slides. Ideally, such oligonucleotides should be totally specific to their respective targets to avoid any cross-hybridization and should not form stable secondary structures that may interfere with the labeled probes during hybridization. We have developed OligoArray 2.0, a program that designs specific oligonucleotides at the genomic scale. It uses a thermodynamic approach to predict secondary structures and to calculate the specificity of targets on chips for a unique probe in a mixture of labeled probes. Furthermore, OligoArray 2.0 can adjust the oligonucleotide length, according to user input, to fit a narrow T(m) range compatible with hybridization requirements. Combined with on chip oligonucleotide synthesis, this program makes it feasible to perform expression analysis on a genomic scale for any organism for which the genome sequence is known. This is without relying on cDNA or oligonucleotide libraries. OligoArray 2.0 was used to design 75 764 oligonucleotides representing 26 140 transcripts from Arabidopsis thaliana. Among this set, we provide at least one specific oligonucleotide for 93% of these transcripts.Keywords
This publication has 18 references indexed in Scilit:
- Optimized in situ construction of oligomers on an array surfaceNucleic Acids Research, 2002
- Selecting signature oligonucleotides to identify organisms using DNA arraysBioinformatics, 2002
- Optimization of oligonucleotide-based DNA microarraysNucleic Acids Research, 2002
- OligoArray: genome-scale oligonucleotide design for microarraysBioinformatics, 2002
- A flexible light-directed DNA chip synthesis gated by deprotection using solution photogenerated acidsNucleic Acids Research, 2001
- Selection of optimal DNA oligos for gene expression arraysBioinformatics, 2001
- Expression profiling using microarrays fabricated by an ink-jet oligonucleotide synthesizerNature Biotechnology, 2001
- Assessment of the sensitivity and specificity of oligonucleotide (50mer) microarraysNucleic Acids Research, 2000
- Microarray fabrication with covalent attachment of DNA using Bubble Jet technologyNature Biotechnology, 2000
- High density synthetic oligonucleotide arraysNature Genetics, 1999