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通过核磁共振研究顺二氯二氨合铂(II)诱导的单链和双链脱氧十磷酸核苷的扭曲。

cis-diamminedichloroplatinum(II) induced distortion of a single and double stranded deoxydecanucleosidenonaphosphate studied by nuclear magnetic resonance.

作者信息

den Hartog J H, Altona C, van Boom J H, van der Marel G A, Haasnoot C A, Reedijk J

机构信息

Department of Chemistry, Gorlaeus Laboratory, State University Leiden, The Netherlands.

出版信息

J Biomol Struct Dyn. 1985 Jun;2(6):1137-55. doi: 10.1080/07391102.1985.10507629.

Abstract

The structural distortion of a single- and a double-stranded decadeoxynucleotide upon binding of cis-PtCl2(NH3)2 was studied by 1H-NMR. After selective platination of d(T-C-T-C-G-G-T-C-T-C) (I) at the central d(-GpG-) site (resulting in I-Pt), several non-exchangeable base protons as well as H1', H2', H2" and H3' protons could be assigned by means of conventional NMR double-resonance techniques. Addition of the complementary decamer strand to I and I-Pt yielded the double-stranded III and III-Pt, respectively. All non-exchangeable base, H1', and most of the H2' and H2" protons in the two double stranded compounds could be assigned using 2D-chemical shift correlation (COSY) and nuclear Overhauser enhancement (NOESY) techniques. The double stranded compound III appears to adopt a B-DNA like structure. Comparison of NOEs and proton-proton coupling constants in the d(-GpG-).cisPt part in I-Pt and III-Pt reveals that their structure displays large similarity. Significant chemical shift changes (i.e. larger than 0.1 ppm) between III and III-Pt are restricted to the central four base pairs. It follows that the outer three base pairs, located on either side of the central four base pairs in III-Pt are likely to adopt a regular B-DNA type helix. The observed large upfield and downfield chemical shifts in the d(-CpGpG-) part of III with respect to III-Pt can be rationalized by describing the distortion of the double helix as a kink. A discussion of the observed physical effects upon platination of a double-stranded oligonucleotide is presented.

摘要

通过¹H-NMR研究了顺式二氯二氨合铂(cis-PtCl₂(NH₃)₂)结合时单链和双链十聚脱氧核苷酸的结构畸变。在d(T-C-T-C-G-G-T-C-T-C)(I)的中央d(-GpG-)位点进行选择性铂化(得到I-Pt)后,通过传统的NMR双共振技术可以确定几个不可交换的碱基质子以及H1'、H2'、H2''和H3'质子。向I和I-Pt中加入互补的十聚体链分别得到双链III和III-Pt。使用二维化学位移相关(COSY)和核Overhauser增强(NOESY)技术可以确定两种双链化合物中所有不可交换的碱基、H1'以及大部分H2'和H2''质子。双链化合物III似乎采用了类似B-DNA的结构。比较I-Pt和III-Pt中d(-GpG-).cisPt部分的核Overhauser效应(NOE)和质子-质子耦合常数表明它们的结构具有很大的相似性。III和III-Pt之间显著的化学位移变化(即大于0.1 ppm)仅限于中央的四个碱基对。由此可见,位于III-Pt中央四个碱基对两侧的外侧三个碱基对可能采用规则的B-DNA型螺旋。相对于III-Pt,在III的d(-CpGpG-)部分观察到的大的高场和低场化学位移可以通过将双螺旋的畸变描述为一个扭结来解释。本文对双链寡核苷酸铂化时观察到的物理效应进行了讨论。

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