Homogeneous Genotyping Assays for

Single Nucleotide Polymorphisms with

Fluorescence Resonance Energy Transfer Detection

 

Xiangning Chen* and Pui-Yan Kwok

 

Division of Dermatology, Washington University School of Medicine, St. Louis, Missouri, 63110, USA

 

Tel: 314 362 8199

Fax: 314 362 8159

E-mail: sam@psts.wustl.edu

ABSTRACT

A homogeneous detection mechanism based on fluorescence resonance energy transfer (FRET) has been developed for two DNA diagnostic tests. In the template-directed dye-terminator incorporation (TDI) assay, a donor dye-labeled primer is extended by DNA polymerase using allele-specific, acceptor dye-labeled ddNTPs. In the dye-labeled oligonucleotide ligation (DOL) assay, a donor dye-labeled common probe is joined to an allele-specific, acceptor dye-labeled probe by DNA ligase. Once the donor and acceptor dyes become part of a new molecule, intramolecular FRET is observed over background intermolecular FRET. The rise in FRET, therefore, can be used as an index for allele-specific ddNTP incorporation or probe ligation. Real time monitoring of FRET greatly increases the sensitivity and reliability of these assays. Change in FRET can also be measured by end-point reading when appropriate controls are included in the experiment. FRET detection proves to be a robust method in homogeneous DNA diagnostic assays.


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Last revised: January 13, 2004.