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位点特异性苯并[a]芘二醇环氧化物修饰的寡核苷酸双链体中碱基序列依赖性弯曲

Base sequence-dependent bends in site-specific benzo[a]pyrene diol epoxide-modified oligonucleotide duplexes.

作者信息

Liu T, Xu J, Tsao H, Li B, Xu R, Yang C, Amin S, Moriya M, Geacintov N E

机构信息

Chemistry Department, New York University 10003, USA.

出版信息

Chem Res Toxicol. 1996 Jan-Feb;9(1):255-61. doi: 10.1021/tx9501086.

Abstract

The site specifically modified oligonucleotides 5'-d(TCCTCCTG1G2CCTCTC) (I) and 5'-d(CTATG1G2G3TATC) (II) were synthesized with single modified guanine residues at positions G1, G2, or G3, derived from the covalent binding reaction of 7R,8S-dihydroxy-9S,10R-epoxy-7,8,9,10-tetrahydrobenzo[a]pyrene ((+)-anti-BPDE) with the exocyclic amino groups of the guanine residues. In denaturing 20% polyacrylamide gels, the electrophoretic mobilities of the (+)-anti-BPDE-modified oligonucleotides I and II are slower than the mobilities of the respective unmodified oligonucleotides and independent of the positions of the BPDE-modified guanines. However, in the double-stranded forms in native 8% polyacrylamide gels, the electrophoretic mobilities of the duplexes with lesions at G2 or G3 are remarkably slower (reductions in mobilities up to approximately 40%) than to duplexes with lesions at G1 and are attributed to physical bends or flexible hinge joints at the sites of the BPDE lesions. These sequence-dependent mobility effects occur whenever the BPDE-modified guanine residues with (+)-trans-stereochemistry are flanked by unmodified G's on the 5'-side. These retarded electrophoretic mobilities are attributed to bending induced by steric hindrance effects involving the bulky 5'-flanking guanines and the pyrenyl residues that are known to point into the 5'-direction relative to the modified G [Cosman, M., et al. (1992) Proc. Natl. Acad. Sci. U.S.A. 89, 1914-1918]. These anomalous electrophoretic mobility effects are not observed in the case of (-)-anti-BPDE-modified sequences I with trans-(-)-anti-BPDE-N2-dG adduct stereochemistry.

摘要

合成了位点特异性修饰的寡核苷酸5'-d(TCCTCCTG1G2CCTCTC)(I)和5'-d(CTATG1G2G3TATC)(II),其在G1、G2或G3位置带有单个修饰的鸟嘌呤残基,这些残基源自7R,8S-二羟基-9S,10R-环氧-7,8,9,10-四氢苯并[a]芘((+)-反式BPDE)与鸟嘌呤残基的环外氨基的共价结合反应。在变性20%聚丙烯酰胺凝胶中,(+)-反式BPDE修饰的寡核苷酸I和II的电泳迁移率比各自未修饰的寡核苷酸慢,且与BPDE修饰的鸟嘌呤位置无关。然而,在天然8%聚丙烯酰胺凝胶中的双链形式下,G2或G3处有损伤的双链体的电泳迁移率比G1处有损伤的双链体明显慢得多(迁移率降低高达约40%),这归因于BPDE损伤位点处的物理弯曲或柔性铰链连接。只要具有(+)-反式立体化学的BPDE修饰的鸟嘌呤残基在5'-侧被未修饰的G包围,就会出现这些序列依赖性迁移效应。这些迁移率减慢归因于涉及庞大的5'-侧翼鸟嘌呤和已知相对于修饰的G指向5'-方向的芘基残基的空间位阻效应引起的弯曲[科斯曼,M.等人(1992年)美国国家科学院院刊89,1914 - 1918]。在具有反式(-)-反式BPDE-N2-dG加合物立体化学的(-)-反式BPDE修饰的序列I的情况下未观察到这些异常的电泳迁移率效应。

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