| Literature DB >> 31164573 |
Leonid V Gening1, Oleg V Shevchenko2, Konstantin Y Kazachenko3, Vyacheslav Z Tarantul4.
Abstract
We propose an improved method for detecting mutations that arise in DNA due to misincorporations of deoxyadenosine-5'-monophosphate (dAMP) opposite 7,8-dihydro-8-oxoguanine (8-oxoG). The method is based on the synthesis of complementary chains ("mirror" products) using a template containing 8-oxoG. The misincorporation of dAMP in the "mirror" product forms EcoRI sites. The restriction analysis of double-stranded DNAs obtained by PCR of "mirror" product allows quantification of the mutagenesis frequency. In addition, single-strand conformational polymorphism (SSCP) analysis of the single-stranded "mirror" products shows that different DNA polymerases only incorporate dA or dC opposite 8-oxoG. The proposed approach used in developing this technique can be applied in the study of other lesions as well, both single and clustered.Entities:
Keywords: 7,8-dihydro-8-oxoguanine; 8-oxoG; DNA lesions; method of detection; mutagenic activity
Year: 2018 PMID: 31164573 PMCID: PMC6481070 DOI: 10.3390/mps1030032
Source DB: PubMed Journal: Methods Protoc ISSN: 2409-9279
Figure 1Schematic representation of the “mirror” method. A single-stranded DNA molecule containing 7,8-dihydro-8-oxoguanine (8-oxoG; X) is used as a template for synthesis of “mirror” products that exist as double-stranded hybrids with their original template. Depending on whether a particular “mirror” molecule was synthesized in an error-free or error-prone manner, it will contain either C or A opposite 8-oxoG, respectively. To eliminate any further influence of the 8-oxoG-containing template, asymmetric PCR is performed, yielding single-stranded DNA molecules containing either G or T in place of the original 8-oxoG. The former, when treated with EcoRI after conversion to double strand form, is left intact, whereas the latter is cleaved by EcoRI in its double strand form. Pol: DNA polymerase.
Figure 2Electrophoretogram of the samples digested by EcoRI. Two controls demonstrate the fates of templates that contain G in place of 8-oxoG (no mutation, denoted as ) and those that contain T in place of 8-oxoG (indicating mutation, denoted as ). is cleaved by EcoRI. Its only band is more mobile than that of , which in turn is left intact after treatment with EcoRI. The AXT template exhibits both bands for each polymerase used in the “mirror” product synthesis. The ratio between the bands’ intensities indicates mutagenic frequency in each case.
Figure 3Single-strand conformational polymorphism (SSCP) analysis of the single-strand “mirror” products obtained as shown in Figure 1. Using ATT and AGT products obtained in asymmetric PCR as controls, one can differentiate between mutant molecules (containing T in place of 8-oxoG) and non-mutant molecules (containing G in place of 8-oxoG). It is evident from the electrophoretogram that only G→T transversion may occur when there is 8-oxoG present. The exception is Pol ι, which is well-known for its low fidelity. KF: Klenow fragment.