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序列和环境对具有GxT2Gy片段的DNA寡聚物自组装的影响。

Sequence and environmental effects on the self-assembly of DNA oligomers possessing GxT2Gy segments.

作者信息

Marotta S P, Tamburri P A, Sheardy R D

机构信息

Department of Chemistry, Seton Hall University, South Orange, New Jersey 07079, USA.

出版信息

Biochemistry. 1996 Aug 13;35(32):10484-92. doi: 10.1021/bi960979u.

Abstract

It is well-known that DNA oligomers possessing contiguous guanine bases can assume non-Watson-Crick type structures through the formation of four-stranded species. The architecture of these four-stranded structures is highly dependent upon the sequence of the DNA and the conditions (e.g., buffer, pH, ionic strength, cations present, and temperature) under which the DNA is prepared. This lab has previously reported the self-assembly of DNA oligomers of sequence C4T4G4T1-4G4 into multistranded high molecular weight species [Dai, T.-Y., Marotta, S. P., & Sheardy, R. D. (1995) Biochemistry 34, 3655-3662]. In order to further investigate the sequence and environmental effects on the self-assembly of DNA oligomers possessing GxT2Gy (where x = 1, 3, or 4 and y = 2-5) segments, the synthesis of a number of such oligomers was undertaken. DNA samples were prepared in standard phosphate buffer (10 mM phosphate, pH 7.0) and NaCl, KCl and/or MgCl2 added to different concentrations in order to evaluate the influence of the cations and their concentrations on the self-assembly of the DNA oligomers. The self-assembly of these oligomers was monitored by nondenaturing polyacrylamide gel electrophoresis and circular dichroism studies. Electrophoresis of the oligomers in either 100 mM K+ or 50 mM Na+ with 50 mM K+ indicated the formation of one or two molecular species for these oligomers. In contrast, electrophoresis of these oligomers in the presence of both 100 mM K+ and 20 mM Mg2+ give a ladder of multiple bands of high molecular weight indicative of multistanded DNA structure formation. The results presented here indicate that self-assembly into high molecular weight species is favored by the presence of Mg2+ as well as the presence of four or more bases in the terminal Gy segment. These results also suggest that the structure of telomeric DNA, which possesses similar sequences, may be quite unusual.

摘要

众所周知,含有连续鸟嘌呤碱基的DNA寡聚物可通过形成四链体物种呈现非沃森-克里克型结构。这些四链体结构的架构高度依赖于DNA的序列以及制备DNA时的条件(例如缓冲液、pH值、离子强度、存在的阳离子和温度)。本实验室此前报道了序列为C4T4G4T1-4G4的DNA寡聚物自组装成多链高分子量物种[戴,T.-Y.,马罗塔,S. P.,& 谢迪,R. D.(1995年)《生物化学》34卷,3655 - 3662页]。为了进一步研究序列和环境对含有GxT2Gy(其中x = 1、3或4且y = 2 - 5)片段的DNA寡聚物自组装的影响,开展了多种此类寡聚物的合成。DNA样品在标准磷酸盐缓冲液(10 mM磷酸盐,pH 7.0)中制备,并添加不同浓度的NaCl、KCl和/或MgCl2,以评估阳离子及其浓度对DNA寡聚物自组装的影响。通过非变性聚丙烯酰胺凝胶电泳和圆二色性研究监测这些寡聚物的自组装。寡聚物在100 mM K+或50 mM Na+与50 mM K+中进行电泳表明这些寡聚物形成了一种或两种分子物种。相比之下,这些寡聚物在100 mM K+和20 mM Mg2+同时存在的情况下进行电泳,得到了一系列高分子量的多条带,表明形成了多链DNA结构。此处给出的结果表明,Mg2+的存在以及末端Gy片段中四个或更多碱基的存在有利于自组装成高分子量物种。这些结果还表明,具有相似序列的端粒DNA的结构可能非常独特。

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