PCR amplification introduces errors into mononucleotide and dinucleotide repeat sequences
Open Access
- 1 October 2001
- journal article
- Published by BMJ in Molecular Pathology
- Vol. 54 (5) , 351-353
- https://doi.org/10.1136/mp.54.5.351
Abstract
The polymerase chain reaction (PCR) is used universally for accurate exponential amplification of DNA. We describe a high error rate at mononucleotide and dinucleotide repeat sequence motifs. Subcloning of PCR products allowed sequence analysis of individual DNA molecules from the product pool and revealed that: (1) monothymidine repeats longer than 11 bp are amplified with decreasing accuracy, (2) repeats generally contract during PCR because of the loss of repeat units, (3) Taq and proofreading polymerase Pfu generate similar errors at mononucleotide and dinucleotide repeats, and (4) unlike the parent PCR product pool, individual clones containing a single repeat length produce no “shadow bands”. These data demonstrate that routine PCR amplification alters mononucleotide and dinucleotide repeat lengths. Such sequences are common components of genetic markers, disease genes, and intronic splicing motifs, and the amplification errors described here can be mistaken for polymorphisms or mutations.Keywords
This publication has 25 references indexed in Scilit:
- Small GTPase Rac1: Structure, Localization, and Expression of the Human GeneBiochemical and Biophysical Research Communications, 2000
- Glutamine Repeats and NeurodegenerationAnnual Review of Neuroscience, 2000
- Origin of spurious multiple bands in the amplification of microsatellite sequencesMolecular Pathology, 1999
- Allelic profiles of mononucleotide repeat microsatellites in control individuals and in colorectal tumors with and without replication errorsOncogene, 1997
- Molecular Genetics of Triplet Repeats: Unstable Expansion of Triplet Repeats as a New Mechanism for Neurodegenerative Diseases.Internal Medicine, 1997
- Mismatch repair gene defects in sporadic colorectal cancers with microsatellite instabilityNature Genetics, 1995
- Enzymatic amplification of synthetic oligodeoxyribonucleotides: Implications for triplet repeat expansions in the human genomeHuman Mutation, 1994
- Improved polymerase fidelity in PCR-SSCPAMutation Research Letters, 1993
- A second-generation linkage map of the human genomeNature, 1992
- Gene deletions causing human genetic disease: mechanisms of mutagenesis and the role of the local DNA sequence environmentHuman Genetics, 1991