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PMID: 7613864 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Self-association of a DNA loop creates a quadruplex: crystal structure of d(GCATGCT) at 1.8 A resolution.

Structure (London, England : 1993) ·Vol. 3 ·No. 4 ·1995-04-15 ·Pages 335-40

Leonard GA, Zhang S, Peterson MR, Harrop SJ, Helliwell JR, Cruse WB, d'Estaintot BL, Kennard O, Brown T, Hunter WN

Abstract

The flexibility of DNA enables it to adopt three interconvertible types of duplex termed the A-, B- and Z-forms. It can also produce hairpin loops, triplex structures and guanine-rich quadruplex structures. Conformational flexibility assists in the tight packaging of DNA, for example in chromosomes. This is important given the large quantity of genetic information that must be packaged efficiently. Moreover, the ability of DNA to specifically self-associate or interact with complementary sequences is fundamental to many biological processes. Structural studies provide information about DNA conformation and DNA-DNA interactions and suggest features that might be relevant to how the molecule performs its biological role. We have characterized the structure of a synthetic heptanucleotide that folds into a novel loop structure. The loop is stabilized by association with a cation, by intra-strand hydrogen bonds between guanine and cytosine that are distinct from the normal Watson-Crick hydrogen bonds, and by van der Waals interactions. Two loops associate through the formation of four G.C pairs that exhibit pronounced base-stacking interactions. The formation of a symmetric A.A base pair further stabilizes loop dimerization. Stacking of the A.A pair on a symmetry-related A.A pairing assists the formation of a four-stranded assembly. A T.T pairing is also observed between symmetry-related loops. This analysis provides a rare example of an experimentally determined non-duplex DNA structure. It provides conformational detail relevant to the tight packaging or folding of a DNA strand and illustrates how a cation might modulate phosphate-phosphate repulsion in a tightly packed structure. The observation of base quartets involving G.C base pairs suggests a further structure to be considered in DNA-DNA interactions. The structure also provides detailed geometries for A.A and T.T base pairs.

MeSH Terms
Base Composition Base Sequence Crystallization DNA/ultrastructure Hydrogen Bonding Models, Molecular Molecular Sequence Data Nucleic Acid Conformation
Chemicals
DNA
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Leonard G A
Department of Chemistry, University of Manchester, UK.
Zhang S
Peterson M R
Harrop S J
Helliwell J R
Cruse W B
d'Estaintot B L
Kennard O
Brown T
Hunter W N
Article Info
Journal
Structure (London, England : 1993)
Abbr.
Structure
ISSN
0969-2126
Published
1995-04-15
Pages
335-40
Language
English
Region
United States
NLM ID
101087697
Subset
IM
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