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平行链DNA对化学修饰试剂的反应性。

Reactivity of parallel-stranded DNA to chemical modification reagents.

作者信息

Klysik J, Rippe K, Jovin T M

机构信息

Department of Molecular Biology, Max Planck Institute for Biophysical Chemistry, Göttingen, FRG.

出版信息

Biochemistry. 1990 Oct 23;29(42):9831-9. doi: 10.1021/bi00494a012.

Abstract

Four 25-nt long oligonucleotides containing dA and dT (D1, D2, D3, and D4) which are capable of forming parallel-stranded (ps) or antiparallel-stranded (aps) duplexes have been synthesized [Rippe, K., Ramsing, N. B., & Jovin, T. M. (1989) Biochemistry 28, 9536-9541]. In the present study, the OsO4-pyridine complex (Os,py), diethyl pyrocarbonate (DEPC), KMnO4, and the 1,10-phenanthroline-cuprous complex [(OP)2Cu+] were used to investigate the conformation-dependent reactivity of ps, aps, and single-stranded (ss) oligonucleotides. The products were analyzed by polyacrylamide gel electrophoresis with single-nucleotide resolution. The results confirm the duplex nature of the ps combinations of oligonucleotides and reveal structural differences in comparison with the aps molecules. Under conditions in which ss-DNA is substantially sensitive to Os,py, both the ps and aps duplexes are very unreactive. A similar result was observed with KMnO4 and DEPC, although with the latter reagent the modification pattern of the labeled strands D1* and D4* was slightly different for the parallel than for the antiparallel duplex. The (OP)2Cu+ complex efficiently cleaves the aps but not the ps duplex and shows a preference for TAT steps. We also tested the effect of monovalent and divalent cation concentrations on the chemical reactivity of the ps, aps, and ss species. Elevated NaCl concentration leads to a dramatic increase in the Os,py and KMnO4 modification of ss molecules and the ps, but not the aps, duplex. We attribute the apparent reaction with ps-DNA to a destabilization of this conformation under the conditions of reaction. In contrast, all reactions with DEPC are somewhat depressed at high salt concentration.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

已合成了四种含dA和dT的25个核苷酸长的寡核苷酸(D1、D2、D3和D4),它们能够形成平行链(ps)或反平行链(aps)双链体[里佩,K.,拉姆辛,N. B.,& 约文,T. M.(1989年)《生物化学》28卷,9536 - 9541页]。在本研究中,使用四氧化锇 - 吡啶络合物(Os,py)、焦碳酸二乙酯(DEPC)、高锰酸钾和1,10 - 菲咯啉 - 亚铜络合物[(OP)₂Cu⁺]来研究ps、aps和单链(ss)寡核苷酸的构象依赖性反应性。通过具有单核苷酸分辨率的聚丙烯酰胺凝胶电泳分析产物。结果证实了寡核苷酸ps组合的双链体性质,并揭示了与aps分子相比的结构差异。在ss - DNA对Os,py基本敏感的条件下,ps和aps双链体都非常不反应。用高锰酸钾和DEPC观察到了类似的结果,尽管对于后一种试剂,标记链D1和D4的修饰模式在平行双链体和反平行双链体之间略有不同。(OP)₂Cu⁺络合物能有效切割aps双链体但不能切割ps双链体,并且对TAT步序有偏好。我们还测试了单价和二价阳离子浓度对ps、aps和ss物种化学反应性的影响。升高的氯化钠浓度导致ss分子以及ps双链体(而非aps双链体)的Os,py和高锰酸钾修饰显著增加。我们将与ps - DNA的明显反应归因于该构象在反应条件下的不稳定。相比之下,在高盐浓度下所有与DEPC的反应都有所减弱。(摘要截短于250字)

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