» Articles » PMID: 12446679

Transcription Factor Decoy Molecules Based on a Peptide Nucleic Acid (PNA)-DNA Chimera Mimicking Sp1 Binding Sites

Overview
Journal J Biol Chem
Specialty Biochemistry
Date 2002 Nov 26
PMID 12446679
Citations 25
Authors
Affiliations
Soon will be listed here.
Abstract

Peptide nucleic acids (PNAs) are DNA-mimicking molecules in which the sugar-phosphate backbone is replaced by a pseudopeptide backbone composed of N-(2-aminoethyl)glycine units. We determined whether double-stranded molecules based on PNAs and PNA-DNA-PNA (PDP) chimeras could be capable of stable interactions with nuclear proteins belonging to the Sp1 transcription factor family and, therefore, could act as decoy reagents able to inhibit molecular interactions between Sp1 and DNA. Since the structure of PNA/PNA hybrids is very different from that of the DNA/DNA double helix, they could theoretically alter the molecular structure of the double-stranded PNA-DNA-PNA chimeras, perturbing interactions with specific transcription factors. We found that PNA-based hybrids do not inhibit Sp1/DNA interactions. In contrast, hybrid molecules based on PNA-DNA-PNA chimeras are very effective decoy molecules, encouraging further experiments focused on the possible use of these molecules for the development of potential agents for a decoy approach in gene therapy. In this respect, the finding that PDP-based decoy molecules are more resistant than DNA/DNA hybrids to enzymatic degradation appears to be of great interest. Furthermore, their resistance can even be improved after complexation with cationic liposomes to which PDP/PDP chimeras are able to bind by virtue of their internal DNA structure.

Citing Articles

Promising strategies employing nucleic acids as antimicrobial drugs.

Moreira L, Guimaraes N, S Santos R, Loureiro J, Pereira M, Azevedo N Mol Ther Nucleic Acids. 2024; 35(1):102122.

PMID: 38333674 PMC: 10850860. DOI: 10.1016/j.omtn.2024.102122.


Effects of Mithramycin on BCL11A Gene Expression and on the Interaction of the BCL11A Transcriptional Complex to γ-Globin Gene Promoter Sequences.

Finotti A, Gasparello J, Zuccato C, Cosenza L, Fabbri E, Bianchi N Genes (Basel). 2023; 14(10).

PMID: 37895276 PMC: 10606601. DOI: 10.3390/genes14101927.


Artificial genetic polymers against human pathologies.

Ivanov G, Tribulovich V, Pestov N, David T, Amoah A, Korneenko T Biol Direct. 2022; 17(1):39.

PMID: 36474260 PMC: 9727881. DOI: 10.1186/s13062-022-00353-7.


Sequence-specific recognition of a coding segment of human gene short pyrimidine/purine oligonucleotides.

Khan S, Singh A, Nain N, Gulati S, Kukreti S RSC Adv. 2022; 11(63):40011-40021.

PMID: 35494143 PMC: 9044637. DOI: 10.1039/d1ra06604h.


A Peptide-Nucleic Acid Targeting miR-335-5p Enhances Expression of Cystic Fibrosis Transmembrane Conductance Regulator () Gene with the Possible Involvement of the CFTR Scaffolding Protein NHERF1.

Tamanini A, Fabbri E, Jakova T, Gasparello J, Manicardi A, Corradini R Biomedicines. 2021; 9(2).

PMID: 33530577 PMC: 7911309. DOI: 10.3390/biomedicines9020117.