Multiplexed SNP genotyping using the QbeadTM system: a quantum dot-encoded microsphere-based assay
- 15 April 2003
- journal article
- research article
- Published by Oxford University Press (OUP) in Nucleic Acids Research
- Vol. 31 (8), 43e-43
- https://doi.org/10.1093/nar/gng043
Abstract
We have developed a new method using the Qbead system for high-throughput genotyping of single nucleotide polymorphisms (SNPs). The Qbead system employs fluorescent Qdot semiconductor nanocrystals, also known as quantum dots, to encode microspheres that subsequently can be used as a platform for multiplexed assays. By combining mixtures of quantum dots with distinct emission wavelengths and intensities, unique spectral 'barcodes' are created that enable the high levels of multiplexing required for complex genetic analyses. Here, we applied the Qbead system to SNP genotyping by encoding microspheres conjugated to allele-specific oligonucleotides. After hybridization of oligonucleotides to amplicons produced by multiplexed PCR of genomic DNA, individual microspheres are analyzed by flow cytometry and each SNP is distinguished by its unique spectral barcode. Using 10 model SNPs, we validated the Qbead system as an accurate and reliable technique for multiplexed SNP genotyping. By modifying the types of probes conjugated to microspheres, the Qbead system can easily be adapted to other assay chemistries for SNP genotyping as well as to other applications such as analysis of gene expression and protein-protein interactions. With its capability for high-throughput automation, the Qbead system has the potential to be a robust and cost-effective platform for a number of applications.Keywords
This publication has 32 references indexed in Scilit:
- dbSNP: a database of single nucleotide polymorphismsNucleic Acids Research, 2000
- Fluorescence Polarization in Homogeneous Nucleic Acid AnalysisGenome Research, 1999
- Single nucleotide polymorphic discrimination by an electronic dot blot assay on semiconductor microchipsNature Biotechnology, 1999
- Polymorphism identification and quantitative detection of genomic DNA by invasive cleavage of oligonucleotide probesNature Biotechnology, 1999
- Allelic discrimination using fluorogenic probes and the 5′ nuclease assayGenetic Analysis: Biomolecular Engineering, 1999
- Multiplex detection of single-nucleotide variations using molecular beaconsGenetic Analysis: Biomolecular Engineering, 1999
- Genotyping single nucleotide polymorphisms by primer extension and high performance liquid chromatographyHuman Genetics, 1999
- Dynamic allele-specific hybridizationNature Biotechnology, 1999
- Semiconductor Nanocrystals as Fluorescent Biological LabelsScience, 1998
- Oligonucleotide ligation assay (OLA) for the diagnosis of familial hypercholesterolemiaNature Biotechnology, 1996