Hydration sites in purine·purine·pyrimidine and pyrimidine·purine·pyrimidine DNA triplexes in aqueous solution Journal Article


Authors: Radhakrishnan, I.; Patel, D. J.
Article Title: Hydration sites in purine·purine·pyrimidine and pyrimidine·purine·pyrimidine DNA triplexes in aqueous solution
Abstract: Background DNA triplexes are higher-order nucleic acid structures with potential roles in gene regulation and hence biochemical and therapeutic applications. The stabilizing influence exerted by water molecules on the conformation of the DNA duplex is well known. However, the role of water molecules in the DNA triple helix has not been investigated. We have previously determined the solution structures of the purine·purine·pyrimidine (R·RY) and pyrimidine·purine·pyrimidine (Y·RY) structural motifs in DNA triplexes and identified both the global helical parameters, as well as local helical distortions associated with non-standard base triple pairing alignments. Results Here we have used homonuclear two-dimensional NMR spectroscopy to define the hydration sites in R·RY and Y·RY DNA triplexes in aqueous solution. Long-lived hydration sites with residence times exceeding 1 nanosecond have been identified in the new groove formed by the Hoogsteen paired strands in both triplexes. Distinctive patterns of hydration are displayed by each triplex in the remaining two grooves. Conclusions The role played by water molecules in DNA triplexes appears to be similar to that played in duplexes. By binding to specific sites, particularly in the narrow groove formed by the Hoogsteen paired strands whose phosphate groups are in close proximity, water molecules may stabilize the triplex by shielding it against unfavorable electrostatic interactions. © 1994 Elsevier Science Ltd. All rights reserved.
Keywords: comparative study; molecular genetics; chemistry; dna; molecular sequence data; nucleotide sequence; magnetic resonance spectroscopy; nuclear magnetic resonance spectroscopy; base sequence; models, molecular; solutions; chemical structure; water; conformation; nucleic acid conformation; solution and solubility; oligodeoxyribonucleotides; heat; base composition; nmr spectroscopy; article; oligodeoxyribonucleotide; support, u.s. gov't, p.h.s.; dna base composition; triplex dna; dna hydration; dna triple helix
Journal Title: Structure
Volume: 2
Issue: 5
ISSN: 0969-2126
Publisher: Cell Press  
Date Published: 1994-05-01
Start Page: 395
End Page: 405
Language: English
DOI: 10.1016/s0969-2126(00)00041-1
PROVIDER: scopus
PUBMED: 8081755
DOI/URL:
Notes: Structure -- Cited By :41 -- Export Date: 14 January 2019 -- Article -- CODEN: STRUE C2 - 8081755 -- Source: Scopus
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  1. Dinshaw J Patel
    477 Patel