INFLUENCE OF ALPHA-DEOXYADENOSINE ON THE STABILITY AND STRUCTURE OF DNA - THERMODYNAMIC AND MOLECULAR MECHANICS STUDIES

被引:40
作者
IDE, H
SHIMIZU, H
KIMURA, Y
SAKAMOTO, S
MAKINO, K
GLACKIN, M
WALLACE, SS
NAKAMUTA, H
SASAKI, M
SUGIMOTO, N
机构
[1] UNIV VERMONT, MARKEY CTR MOLEC GENET, DEPT MICROBIOL & MOLEC GENET, BURLINGTON, VT 05405 USA
[2] KONAN UNIV, FAC SCI, DEPT CHEM, HIGASHINADA KU, KOBE 658, JAPAN
关键词
D O I
10.1021/bi00021a006
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The a anomer of deoxyadenosine (a) and an abasic site (tetrahydrofuran, F), which are DNA lesions produced by free radicals, were site-specifically incorporated in 9-mer duplexes d(TGAGXGTAC). d-(GTACNCTCA), where X = alpha or F and N = A, G, C, or T. Their influence on thermodynamic stability and structure of DNA was assessed by UV-melting measurements and molecular mechanics calculations. UV-melting studies revealed that a duplex containing an alpha T pair was as stable as the parental duplex containing an alpha T pair at the same site. Furthermore, the stability of duplexes containing alpha varied depending on the base opposite this lesion, with the T-m decreasing in the following order: alpha T > alpha C approximate to alpha A > alpha G. On the contrary, an abasic site introduced in the same site showed a significantly greater destabilizing effect than alpha, but variation of T-m with the bases opposite F was less evident. To delineate the molecular mechanism of the thermodynamic effects of an alpha lesion, molecular mechanics calculations were performed for the same duplexes as used for UV-melting measurements. The results suggest that the structural perturbation introduced into DNA by an alpha N pair is alpha G > alpha A > alpha C > alpha T, showing a parallel correlation with the destabilizing effects of alpha N pairs. On the basis of these results, it is discussed how the perturbations introduced by these DNA lesions may influence the selection of nucleotides opposite the lesions by DNA polymerases and the interaction with DNA repair enzymes such as Escherichia coli endonuclease IV and exonuclease III.
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页码:6947 / 6955
页数:9
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