Abstract
The chemical reactivity of thymine (T), when mismatched with the bases cytosine, guanine, and thymine, and of cytosine (C), when mismatched with thymine, adenine, and cytosine, has been examined. Heteroduplex DNAs containing such mismatched base pairs were first incubated with osmium tetroxide (for T and C mismatches) or hydroxylamine (for C mismatches) and then incubated with piperidine to cleave the DNA at the modified mismatched base. This cleavage was studied with an internally labeled strand containing the mismatched T or C, such that DNA cleavage and thus reactivity could be detected by gel electrophoresis. Cleavage at a total of 13 T and 21 C mismatches isolated (by at least three properly paired bases on both sides) single-base-pair mismatches was identified. All T or C mismatches studied were cleaved. By using end-labeled DNA probes containing T or C single-base-pair mismatches and conditions for limited cleavage, we were able to show that cleavage was at the base predicted by sequence analysis and that mismatches in a length of DNA could be readily detected by such an approach. This procedure may enable detection of all single-base-pair mismatches by use of sense and antisense probes and thus may be used to identify the mutated base and its position in a heteroduplex.
MeSH Terms
Base Composition
Cloning, Molecular
Cytosine
DNA/drug effects,genetics
Genes
Hydroxylamine
Hydroxylamines/pharmacology
Mutation
Nucleic Acid Heteroduplexes
Osmium/pharmacology
Osmium Tetroxide/pharmacology
Plasmids
Steroid 21-Hydroxylase/genetics
Thymine
Chemicals
Hydroxylamines
Nucleic Acid Heteroduplexes
Osmium
Hydroxylamine
Cytosine
DNA
Steroid 21-Hydroxylase
Osmium Tetroxide
Thymine
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Cotton R G
Department of Biochemistry, University of Oxford, United Kingdom.
Rodrigues N R
Campbell R D
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