The effects of sequence length and oligonucleotide mismatches on 5¢ exonuclease assay ef®ciency
نویسندگان
چکیده
Although increasingly used for DNA quanti®cation, little is known of the dynamics of the 5¢ exonuclease assay, particularly in relation to amplicon length and mismatches at oligonucleotide binding sites. In this study we used seven assays targeting the c-myc proto-oncogene to examine the effects of sequence length, and report a marked reduction in ef®ciency with increasing fragment length. Three of the assays were further tested on 15 mammalian species to gauge the effect of sequence differences on performance. We show that the effects of probe and primer binding site mismatches are complex, with single point mutations often having little effect on assay performance, while multiple mismatches to the probe caused the greatest reduction in ef®ciency. The usefulness of the assays in predicting rates of `allelic dropout' and successful polymerase chain reactions (PCRs) in microsatellite genotyping studies is supported, and we demonstrate that the use of a fragment more similar in size to typical microsatellites (190 bp) is no more informative than a shorter (81 bp) fragment. The assays designed for this study can be used directly for quanti®cation of DNA from many mammalian species or, alternatively, information provided here can be used to design unique sequence-speci®c assays to maximise
منابع مشابه
The effects of sequence length and oligonucleotide mismatches on 5' exonuclease assay efficiency.
Although increasingly used for DNA quantification, little is known of the dynamics of the 5' exonuclease assay, particularly in relation to amplicon length and mismatches at oligonucleotide binding sites. In this study we used seven assays targeting the c-myc proto-oncogene to examine the effects of sequence length, and report a marked reduction in efficiency with increasing fragment length. Th...
متن کاملTaq DNA polymerase extension of internal primers blocks polymerase chain reactions allowing differential amplification of molecules with identical 5' and 3' ends.
Polymerase chain reaction (PCR) methodology (1) has become a routine method for selectively amplifying segments of DNA from a wide variety of sources. Amplification of specific sequences is dependent upon an exact match between the template DNA and the oligonucleotide primers. Mismatches at the 3' terminus lead to greatly reduced amplification, with no detectable product when amplified under th...
متن کاملEffects of cations on small fragment of DNA polymerase I using a novel FRET assay.
DNA polymerase I (PolI) digested by protease produces a small fragment (SF) containing 5'-3' exonuclease activity. The 5'-3' exonuclease activity of polI cleaves the downstream RNA primer strands during DNA replication in vivo. Previous in vitro studies suggested its capability of cleaving duplex from 5' terminal and a flap-structure-specific endonuclease activity. From the crystal structures o...
متن کاملA label-free assay of exonuclease activity using a pyrosequencing technique.
Enzymes with 3'-5' exonuclease activities are important in promoting the accuracy of DNA replication and DNA repair by proofreading. The alteration of the function of these enzymes by endogenous or exogenous effectors could, therefore, have a considerable impact on DNA replication and ultimately on genome integrity. We have developed a label-free high-throughput screening method for quantifying...
متن کاملPolymerase and Exonuclease Activities in Herpes Simplex Virus Type 1 DNA Polymerase Are Not Highly Coordinated
The herpes polymerase-processivity factor complex consists of the catalytic UL30 subunit containing both polymerase and proofreading exonuclease activities and the UL42 subunit that acts as a processivity factor. Curiously, the highly active exonuclease has minimal impact on the accumulation of mismatches generated by the polymerase activity. We utilized a series of oligonucleotides of defined ...
متن کامل