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Chem Biol ; 20(3): 445-53, 2013 Mar 21.
Article in English | MEDLINE | ID: mdl-23521801

ABSTRACT

We present an approach for fluorescent in situ detection of short, single-copy sequences within genomic DNA in human cells. The single-copy sensitivity and single-base specificity of our method is achieved due to the combination of three components. First, a peptide nucleic acid (PNA) probe locally opens a chosen target site, which allows a padlock DNA probe to access the site and become ligated. Second, rolling circle amplification (RCA) generates thousands of single-stranded copies of the target sequence. Finally, fluorescent in situ hybridization (FISH) is used to visualize the amplified DNA. We validate this technique by successfully detecting six single-copy target sites on human mitochondrial and autosomal DNA. We also demonstrate the high selectivity of this method by detecting X- and Y-specific sequences on human sex chromosomes and by simultaneously detecting three sequence-specific target sites. Finally, we discriminate two target sites that differ by 2 nt. The PNA-RCA-FISH approach is a distinctive in situ hybridization method capable of multitarget visualization within human chromosomes and nuclei that does not require DNA denaturation and is extremely sequence specific.


Subject(s)
DNA/analysis , DNA/genetics , Genome, Human/genetics , Oligonucleotide Probes/metabolism , Optical Imaging/methods , Peptide Nucleic Acids/metabolism , Base Sequence , DNA/metabolism , DNA, Mitochondrial/genetics , DNA, Mitochondrial/metabolism , Genome, Mitochondrial/genetics , Humans , Nucleic Acid Hybridization , Oligonucleotide Probes/genetics , Peptide Nucleic Acids/genetics
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