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在独特位点用补骨脂素修饰的DNA底物的构建以及ABC核酸外切酶对这些均匀修饰底物作用机制的研究。

Construction of DNA substrates modified with psoralen at a unique site and study of the action mechanism of ABC excinuclease on these uniformly modified substrates.

作者信息

Van Houten B, Gamper H, Hearst J E, Sancar A

出版信息

J Biol Chem. 1986 Oct 25;261(30):14135-41.

PMID:3021728
Abstract

Psoralens bind to DNA noncovalently and upon exposure to near UV (320-400 nm) light produce covalent adducts. Thymidine residues in DNA, especially those at 5'-TpA-3' sequences, are most susceptible to the photochemical reaction. This property of the reaction and the recent advances in oligonucleotide synthesis and separation has enabled us to construct DNA fragments containing psoralen adducts at a specific site. The octanucleotide 5'-TCGTAGCT-3' was photoreacted (in the presence of the complementary strand) with the synthetic psoralen 4'-hydroxymethyl-4,5',8-trimethylpsoralen to obtain oligonucleotides adducted via the furan or pyrone ring at the internal thymine. These modified octanucleotides were ligated to nonmodified oligonucleotides to obtain a 40-base pair DNA fragment containing a psoralen adduct at a central location. The modified fragment having the thymine-furan side 4'-hydroxymethyl-4,5',8-trimethylpsoralen adduct was irradiated with 360 nm of light to produce an interstrand cross-link, and this cross-linked DNA was purified to homogeneity. These uniquely modified DNAs were used as substrates for Escherichia coli ABC excinuclease to determine its incision mechanism unambiguously and to determine the contact sites of the enzyme. ABC excinuclease mediates the cleavage of the 8th and 5th phosphodiester bonds 5' and 3', respectively, to psoralen monoadducts, and the 9th (5') and 3rd (3') phosphodiester bonds to the furan-side thymine of the cross-link. Preliminary DNaseI footprinting studies show that ABC excinuclease protects the whole 40-base pair fragment from DNaseI, and binding of the A and B subunits to the furan side-monoadducted substrate produces two hypersensitive phosphodiester bonds in the vicinity of the 5' incision site of ABC excinuclease.

摘要

补骨脂素与DNA非共价结合,在近紫外光(320 - 400纳米)照射下产生共价加合物。DNA中的胸腺嘧啶残基,尤其是那些位于5'-TpA-3'序列的残基,对光化学反应最为敏感。该反应的这一特性以及寡核苷酸合成与分离方面的最新进展,使我们能够构建在特定位点含有补骨脂素加合物的DNA片段。八聚体5'-TCGTAGCT-3'与合成补骨脂素4'-羟甲基-4,5',8-三甲基补骨脂素进行光反应(在互补链存在下),以获得通过呋喃或吡喃环在内侧胸腺嘧啶处加合的寡核苷酸。这些修饰的八聚体与未修饰的寡核苷酸连接,得到一个40个碱基对的DNA片段,该片段在中心位置含有一个补骨脂素加合物。将具有胸腺嘧啶 - 呋喃侧4'-羟甲基-4,5',8-三甲基补骨脂素加合物的修饰片段用360纳米的光照射以产生链间交联,并且将这种交联的DNA纯化至同质。这些经过独特修饰的DNA被用作大肠杆菌ABC切除核酸酶的底物,以明确确定其切割机制并确定该酶的接触位点。ABC切除核酸酶分别介导在补骨脂素单加合物的5'和3'方向上第8个和第5个磷酸二酯键的切割,以及在交联的呋喃侧胸腺嘧啶的第9个(5')和第3个(3')磷酸二酯键的切割。初步的DNaseI足迹研究表明,ABC切除核酸酶保护整个40个碱基对的片段免受DNaseI的作用,并且A和B亚基与呋喃侧单加合底物的结合在ABC切除核酸酶的5'切割位点附近产生两个超敏磷酸二酯键。

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