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Polypurine Reverse-Hoogsteen (PPRH) Oligonucleotides Can Form Triplexes with Their Target Sequences Even Under Conditions Where They Fold into G-quadruplexes

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Journal Sci Rep
Specialty Science
Date 2017 Jan 10
PMID 28067256
Citations 6
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Abstract

Polypurine reverse-Hoogsteen (PPRH) oligonucleotides are non-modified DNA molecules composed of two mirror-symmetrical polypurine stretches linked by a five-thymidine loop. They can fold into reverse-Hoogsteen hairpins and bind to their polypyrimidine target sequence by Watson-Crick bonds forming a three-stranded structure. They have been successfully used to knockdown gene expression and to repair single-point mutations in cells. In this work, we provide an in vitro characterization (UV and fluorescence spectroscopy, gel electrophoresis and nuclease assays) of the structure and stability of two repair-PPRH oligonucleotides and of the complexes they form with their single-stranded targets. We show that one PPRH oligonucleotide forms a hairpin, while the other folds, in potassium, into a guanine-quadruplex (G4). However, the hairpin-prone oligonucleotide does not form a triplex with its single-stranded target, while the G4-prone oligonucleotide converts from a G4 into a reverse-Hoogsteen hairpin forming a triplex with its target sequence. Our work proves, in particular, that folding of a PPRH oligonucleotide into a G4 does not necessarily impair sequence-specific DNA recognition by triplex formation. It also illustrates an original example of DNA structural conversion of a G4 into a reverse-Hoogsteen hairpin driven by triplex formation; this kind of conversion might occur at particular loci of genomic DNA.

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References
1.
Schroth G, Ho P . Occurrence of potential cruciform and H-DNA forming sequences in genomic DNA. Nucleic Acids Res. 1995; 23(11):1977-83. PMC: 306972. DOI: 10.1093/nar/23.11.1977. View

2.
Chan P, Lin M, Faruqi A, Powell J, Seidman M, Glazer P . Targeted correction of an episomal gene in mammalian cells by a short DNA fragment tethered to a triplex-forming oligonucleotide. J Biol Chem. 1999; 274(17):11541-8. DOI: 10.1074/jbc.274.17.11541. View

3.
Mirkin S, Frank-Kamenetskii M . H-DNA and related structures. Annu Rev Biophys Biomol Struct. 1994; 23:541-76. DOI: 10.1146/annurev.bb.23.060194.002545. View

4.
Moerschell R, Tsunasawa S, Sherman F . Transformation of yeast with synthetic oligonucleotides. Proc Natl Acad Sci U S A. 1988; 85(2):524-8. PMC: 279583. DOI: 10.1073/pnas.85.2.524. View

5.
Mergny J, Li J, Lacroix L, Amrane S, Chaires J . Thermal difference spectra: a specific signature for nucleic acid structures. Nucleic Acids Res. 2005; 33(16):e138. PMC: 1201377. DOI: 10.1093/nar/gni134. View