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含有胸苷酰(3'→5')胸苷的杜瓦光产物的DNA十聚体双链体的核磁共振结构研究。(6-4)加合物通过光转化为其杜瓦价异构体导致寡核苷酸双链体的构象变化。

NMR structural studies of DNA decamer duplex containing the Dewar photoproduct of thymidylyl(3'-- >5')thymidine. Conformational changes of the oligonucleotide duplex by photoconversion of a (6-4) adduct to its Dewar valence isomer.

作者信息

Hwang G S, Kim J K, Choi B S

机构信息

Department of Chemistry, Korea Advanced Institute of Science and Technology, Taejon.

出版信息

Eur J Biochem. 1996 Jan 15;235(1-2):359-65. doi: 10.1111/j.1432-1033.1996.00359.x.

Abstract

The single-stranded deoxynucleotide decamer containing a site-specific Dewar valence isomer of the (6-4) adduct of thymidylyl (3'-->5')-thymidine was generated by direct photolysis of d(CGCATTACGC) with UV-B and UV-C irradiation. The conformation of the Dewar-photomodified deoxyoligonucleotide duplex, (C1-G2-C3-A4-T5[DW]T6-A7-C8-G9-C10) . (G11-C12-G13-T14-A15-A16-T17-G18+ ++-C19-G20), has been studied by one- and two-dimensional NMR spectroscopy. While the eight of the ten complementary nucleotides form Watson-Crick-type hydrogen bonding, the 5'-TpT-3' bases of the Dewar lesion show no evidence of complementary hydrogen bonding formation to each other. The Dewar covalent linkage for the adjacent pyrimidine base leads to unusual base stacking, which is different from that of normal B-DNA. Unusual NOEs indicate that the formation of a Dewar photoproduct in the B-DNA duplex is likely to alter its local and global structures. Also, detailed NMR data show that the base pairing and stacking of the Dewar-photoproduct-containing decamer duplex differ from that of the (6-4)-adduct-containing decamer duplex, suggesting that isomerization of the (6-4) adduct to its Dewar form induces a substantial change in the structure of the oligonucleotide duplex.

摘要

通过用UV-B和UV-C照射直接光解d(CGCATTACGC),生成了含有胸苷酰基(3'→5')-胸苷的(6-4)加合物的位点特异性杜瓦价异构体的单链脱氧核苷酸十聚体。通过一维和二维核磁共振光谱研究了杜瓦光修饰的脱氧寡核苷酸双链体(C1-G2-C3-A4-T5[DW]T6-A7-C8-G9-C10)·(G11-C12-G13-T14-A15-A16-T17-G18+++-C19-G20)的构象。虽然十个互补核苷酸中的八个形成沃森-克里克型氢键,但杜瓦损伤的5'-TpT-3'碱基之间没有形成互补氢键的证据。相邻嘧啶碱基的杜瓦共价键导致异常的碱基堆积,这与正常B-DNA的碱基堆积不同。异常的核Overhauser效应(NOE)表明,B-DNA双链体中杜瓦光产物的形成可能会改变其局部和整体结构。此外,详细的核磁共振数据表明,含有杜瓦光产物的十聚体双链体的碱基配对和堆积与含有(6-4)加合物的十聚体双链体不同,这表明(6-4)加合物异构化为其杜瓦形式会导致寡核苷酸双链体结构发生实质性变化。

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