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Triple helix DNA alters nucleosomal histone-DNA interactions and acts as a nucleosome barrier
L Westin1, P Blomquist, J F Milligan
1Department of Cellular and Molecular Biology, Medical Nobel Institute, Karolinska Institute, Stockholm, Sweden.
Abstract:
Oligonucleotides which form triple helical complexes on double-stranded DNA have been previously reported to selectively inhibit transcription both in vitro and in vivo by physically blocking RNA polymerase or transcription factor access to the DNA template. Here we show that a 16mer oligonucleotide, which forms triple helix DNA by binding to a 16 bp homopurine segment, alters the formation of histone-DNA contacts during in vitro nucleosome reconstitution. This effect was DNA sequence-specific and required the oligonucleotide to be present during in vitro nucleosome reconstitution. Binding of the triple helix oligonucleotide on a 199 bp mouse mammary tumour virus promoter DNA fragment with a centrally located triplex DNA resulted in interruption of histone-DNA contacts flanking the triplex DNA segment. When nucleosome reconstitution is carried out on a longer, 279 bp DNA fragment with an asymmetrically located triplex site, nucleosome formation occurred at the border of the triple helical DNA. In this case the triplex DNA functioned as a nucleosome barrier. We conclude that triplex DNA cannot be accommodated within a nucleosome context and thus may be used to site-specifically manipulate nucleosome organization.
Insights
Triple helix DNA, formed by oligonucleotides, disrupts histone-DNA interactions during nucleosome assembly. This triplex DNA acts as a barrier, enabling site-specific control over nucleosome organization.
Area of Science:
- Molecular Biology
- Epigenetics
- Genetics
Background:
- Oligonucleotides forming triple helix DNA can inhibit transcription by blocking polymerase access.
- The impact of triple helix DNA on chromatin structure, specifically nucleosome formation, is not well understood.
Purpose of the Study:
- To investigate how triple helix DNA affects histone-DNA interactions during nucleosome reconstitution.
- To determine if triple helix DNA can be used to control nucleosome organization.
Main Methods:
- In vitro nucleosome reconstitution using DNA fragments containing a triplex DNA-forming oligonucleotide.
- Analysis of histone-DNA contacts using DNA fragments of varying lengths and triplex site locations.
Main Results:
- Triple helix DNA formation alters histone-DNA contacts in a sequence-specific manner.
- The triplex DNA acts as a barrier, directing nucleosome formation to its border.
- Nucleosomes cannot accommodate the triple helix DNA structure.
Conclusions:
- Triplex DNA formation interferes with normal nucleosome assembly.
- Triplex DNA can serve as a nucleosome barrier, allowing for targeted manipulation of chromatin organization.
- This mechanism offers a novel approach for site-specific control of gene expression through chromatin remodeling.