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左手螺旋DNA:从合成聚合物到染色体

Left-handed DNA: from synthetic polymers to chromosomes.

作者信息

Jovin T M, McIntosh L P, Arndt-Jovin D J, Zarling D A, Robert-Nicoud M, van de Sande J H, Jorgenson K F, Eckstein F

机构信息

Abteilung Molekulare Biologie, Max Planck Institut für Biophysikalische Chemie, Göttingen, Federal Republic of Germany.

出版信息

J Biomol Struct Dyn. 1983 Oct;1(1):21-57. doi: 10.1080/07391102.1983.10507425.

Abstract

The interconversions between right-handed (R) and left-handed (L) helical conformations of DNA have been assessed by spectroscopic, electrophoretic, immunochemical, and enzymatic techniques. We have screened salt and solvent conditions which facilitate these transitions, as well as certain chemical modifications of the bases and backbone of defined synthetic polynucleotides. These include major and minor groove substituents as well as phosphorothioate analogues of selected phosphodiester bonds. We have established: R-L transitions in poly[d(G-C)] with iodo, bromo, methyl, and aza substitutions at the C5 position of cytosine, or phosphorothioate modification of the dGpC linkage. R-L transitions in the [d(A-C).d(G-T)]n sequence family using polymers modified as in the case of poly[d(G-C)]. The isomerizations are highly salt and temperature dependent. a possible L form of poly[d(A-T)] substituted with 2-amino adenine. the immunogenicities of constitutive and facultative Z-DNAs. the recognition specificities of different anti-Z-DNA IgGs for the spectrum of available polynucleotide probes. Some IgGs are sequence-specific. stabilization by IgG of otherwise transient left-handed conformations. anti-Z-DNA IgG binding to acid-fixed polytene chromosomes from the Diptera Drosophila, Chironomus, and Glyptotendipes. Laser scanning microscopy shows a maximal binding of 1 IgG per 3000-15,000 basepairs in acid fixed preparations. anti-Z-DNA IgG binding to negatively supercoiled plasmid, viral, phage, and recombinant closed circular DNAs. transcription from Z and Z* (associated) left-handed templates. From these and other results we propose that Z*-DNA may have important structural-functional roles in the cell.

摘要

通过光谱、电泳、免疫化学和酶学技术评估了DNA右手(R)螺旋构象和左手(L)螺旋构象之间的相互转换。我们筛选了有助于这些转变的盐和溶剂条件,以及特定合成多核苷酸碱基和主链的化学修饰。这些修饰包括大沟和小沟取代基以及选定磷酸二酯键的硫代磷酸酯类似物。我们已经确定:在聚[d(G-C)]中,胞嘧啶C5位置有碘、溴、甲基和氮杂取代,或dGpC连接有硫代磷酸酯修饰时发生R-L转变。在[d(A-C).d(G-T)]n序列家族中,使用如聚[d(G-C)]那样修饰的聚合物时发生R-L转变。异构化高度依赖盐和温度。一种可能的用2-氨基腺嘌呤取代的聚[d(A-T)]的L形式。组成型和兼性Z-DNA的免疫原性。不同抗Z-DNA IgG对可用多核苷酸探针谱的识别特异性。一些IgG具有序列特异性。IgG对否则为瞬时左手构象的稳定作用。抗Z-DNA IgG与双翅目果蝇、摇蚊和 Glyptotendipes 的酸固定多线染色体结合。激光扫描显微镜显示在酸固定制剂中每3000 - 15000个碱基对有1个IgG的最大结合。抗Z-DNA IgG与负超螺旋质粒、病毒、噬菌体和重组闭环DNA结合。从Z和Z*(相关)左手模板转录。从这些以及其他结果我们提出Z*-DNA可能在细胞中具有重要的结构-功能作用。

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