New insights into DNA triplexes: residual twist and radial difference as measures of base triplet non-isomorphism and their implication to sequence-dependent non-uniform DNA triplex

Thenmalarchelvi, R. ; Yathindra, N. (2005) New insights into DNA triplexes: residual twist and radial difference as measures of base triplet non-isomorphism and their implication to sequence-dependent non-uniform DNA triplex Nucleic Acids Research, 33 (1). pp. 43-55. ISSN 0305-1048

Full text not available from this repository.

Official URL: http://nar.oxfordjournals.org/content/33/1/43

Related URL: http://dx.doi.org/10.1093/nar/gki143

Abstract

DNA triplexes are formed by both isomorphic (structurally alike) and non-isomorphic (structurally dissimilar) base triplets. It is espoused here that (i) the base triplet non-isomorphism may be articulated in structural terms by a residual twist (Δt°), the angle formed by line joining the C1'...C1' atoms of the adjacent Hoogsteen or reverse Hoogsteen (RH) base pairs and the difference in base triplet radius (Δr Ε), and (ii) their influence on DNA triplex is largely mechanistic, leading to the prediction of a high (t + Δt and low (t - Δt)° twist at the successive steps of Hoogsteen or RH duplex of a parallel or antiparallel triplex. Efficacy of this concept is corroborated by molecular dynamics (MD) simulation of an antiparallel DNA triplex comprising alternating non-isomorphic GGC and T*AT triplets. Conformational changes necessitated by base triplet non-isomorphism are found to induce an alternating (i) high anti and anti glycosyl and (ii) BII and an unusual BIII conformation resulting in a zigzag backbone for the RH strand. Thus, base triplet non-isomorphism causes DNA triplexes into exhibiting sequence-dependent non-uniform conformation. Such structural variations may be relevant in deciphering the specificity of interaction with DNA triplex binding proteins. Seemingly then, residual twist (Δt °) and radial difference (Δr Ε) suffice as indices to define and monitor the effect of base triplet non-isomorphism in nucleic acid triplexes.

Item Type:Article
Source:Copyright of this article belongs to Oxford University Press.
ID Code:58715
Deposited On:02 Sep 2011 03:50
Last Modified:02 Sep 2011 03:50

Repository Staff Only: item control page