Yeh H J, Sayer J M, Liu X, Altieri A S, Byrd R A, Lakshman M K, Yagi H, Schurter E J, Gorenstein D G, Jerina D M
NIDDK, National Institutes of Health, Bethesda, Maryland 20892, USA.
Biochemistry. 1995 Oct 17;34(41):13570-81. doi: 10.1021/bi00041a037.
A nonanucleotide, d(G1G2T3C4[BaP]A5C6G7A8G9), in which (+)-(7R,8S,9S,10R)-7,8-dihydroxy-9,10-epoxy-7,8,9,10- tetrahydrobenzo[a]pyrene (7-hydroxyl group and epoxide oxygen are trans) is covalently bonded to the exocyclic N6-amino group of deoxyadenosine (dA5) through trans addition at C10 of the epoxide (to give a 10S adduct) has been synthesized. The solution structure of the duplex, d(G1G2T3C4[BaP]A5C6G7A8G9).d(C10T11C12G13G14G15A16C17C18+ ++), containing a dG mismatch opposite the modified dA (designated 10S-[BaP]dA.dG 9-mer duplex) has been investigated using a combination of 1D and 2D (including COSY, PECOSY, TOCSY, NOESY, and indirect detection of 1H-31P HETCOR) NMR spectroscopies. The NMR results together with restrained molecular dynamics/energy minimization calculations show that the modified dA5 adopts a syn glycosidic torsion angle whereas all other nucleotide residues adopt anti glycosidic torsion angles. The sugar ring of dA5 is in the C3'-endo conformation, and the sugar rings of the other residues are in the C2'-endo conformation. The hydrocarbon attached at dA5 orients toward the 3' end of the modified strand (i.e., dC6 direction) and intercalates between and parallel to bases of dG13 and dG14 of the complementary strand directly opposite dC6 and dA5, respectively. The edge of the hydrocarbon bearing H11 and H12 is positioned between the imino protons of dG13 and dG14 in the interior of the duplex, whereas H4 and H5 at the opposite edge are positioned near the sugar H1' and H2" protons of dG13 and facing the exterior of the duplex. The mismatched AG base pair is stabilized by dAsyn-dGanti base pairing in which the imino proton and the O6 of dG14 are hydrogen bonded to N7- and the single N6-amino proton, respectively, of the modified dA5. The modified DNA duplex remains in a right-handed helix, which bends at the site of intercalation about 20 to 30 degrees away from the helical axis and toward the direction of the modified strand.
一种九核苷酸d(G1G2T3C4[BaP]A5C6G7A8G9)已被合成,其中(+)-(7R,8S,9S,10R)-7,8-二羟基-9,10-环氧-7,8,9,10-四氢苯并[a]芘(7-羟基和环氧基氧呈反式)通过在环氧化物的C10处进行反式加成(得到10S加合物)与脱氧腺苷(dA5)的外环N6-氨基共价结合。使用一维和二维(包括COSY、PECOSY、TOCSY、NOESY以及1H-31P HETCOR间接检测)核磁共振光谱的组合,研究了双链体d(G1G2T3C4[BaP]A5C6G7A8G9).d(C10T11C12G13G14G15A16C17C18 +++)的溶液结构,该双链体在修饰的dA对面含有一个dG错配(称为10S-[BaP]dA.dG 9-聚体双链体)。核磁共振结果与受限分子动力学/能量最小化计算表明,修饰的dA5采用顺式糖苷扭转角,而所有其他核苷酸残基采用反式糖苷扭转角。dA5的糖环处于C3'-内型构象,其他残基的糖环处于C2'-内型构象。连接在dA5上的烃基朝向修饰链的3'端(即dC6方向),并分别插入互补链中与dC6和dA5直接相对的dG13和dG14碱基之间并与之平行。带有H11和H12的烃基边缘位于双链体内dG