Nucleic Acids Research · 2000 · 44 citations · 27 references
GeneticsDna AnalysisMolecular BiologyNucleic Acid Amplification TestMolecular GeneticsDna SequencesGenomicsDna HeteroduplexesHeteroduplex Mobility AssayMolecular EcologyDna ComputingDna SequencingDna ReplicationChromosomal RearrangementBioinformaticsChromatinNatural SciencesHeteroduplex MobilityNucleic Acid AmplificationMedicine
Heteroduplex mobility assay (HMA) is a fast and inexpensive method for determining relatedness between DNA sequences. Rapidly evolving viruses such as HIV-1 develop marked sequence differences in their genomes over the course of the epidemic and infection in a single individual. HMA can be used to monitor both processes. Here, we systematically evaluated the influence of single base mismatches on heteroduplex mobility. The impact of mismatches at nine different positions in 559 bp double-stranded DNA molecules, within a background of overall sequence divergence ranging from 1.97 to 9.65%, was evaluated in both non-denaturing and partially-denaturing acrylamide gels. We found that the electrophoretic mobility of heteroduplexes was proportional to the level of mismatch when that level exceeded 4.5%. Overall, mismatches near the center of the fragment and clustered mismatches tended to have an exaggerated influence on the mobility of heteroduplexes. Thus, the use of HMA for quantitative inference of genetic distances under the conditions we describe is of greatest utility at levels of mismatch >5%.
27
Alagille syndrome is caused by mutations in human Jagged1, which encodes a ligand for Notch1
Linheng Li, Ian D. Krantz, Yu Deng et al. · Nature Genetics · 1997 · 1.3K citations
Arupa Ganguly, Matthew J. Rock, Darwin J. Prockop · Proceedings of the National Academy of Sciences · 1993 · 677 citations