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通过酶促甲基化检测,在V型DNA中呈现非B-DNA构象的序列。

Sequences that adopt non-B-DNA conformation in form V DNA as probed by enzymic methylation.

作者信息

Brahmachari S K, Shouche Y S, Cantor C R, McClelland M

出版信息

J Mol Biol. 1987 Jan 5;193(1):201-11. doi: 10.1016/0022-2836(87)90637-1.

Abstract

pBR322 form V DNA is a highly torsionally strained molecule with a linking number of zero. We have used sequence-specific DNA methylases as probes for B-DNA in this molecule, exploiting the inability of methylases to methylate single-stranded DNA and Z-DNA, both of which are known to occur in form V DNA. Some sequences in form V DNA were shown to be totally in the B-form, others were totally in an altered, unmethylatable conformation, while still other sites appeared to exist partly in altered and partly in normal B-conformation. Some potential Z-forming sequences (alternating pyrimidine/purine) of less than seven base-pairs were not in the Z conformation in form V DNA, whereas others did adopt an altered structure, indicating a modulating influence of flanking sequences. Furthermore, regions of imperfect alternating pyrimidine/purine structure were sometimes capable of adopting an altered structure. In addition, some regions of altered structure had no apparent Z-forming sequences, nor were they in polypurine stretches, which have also been proposed to form left-handed DNA. These non-B-DNA conformations may represent novel left-handed helical structures or sequences that become single stranded under torsional strain. Long regions of either altered (unmethylatable) DNA or B-DNA were not always observed. In fact, one region showed three transitions between B-like DNA and altered structure within 26 base-pairs.

摘要

pBR322 V型DNA是一种具有零连接数的高度扭转应变分子。我们使用序列特异性DNA甲基化酶作为该分子中B-DNA的探针,利用甲基化酶无法甲基化单链DNA和Z-DNA的特性,已知这两种DNA在V型DNA中都会出现。结果表明,V型DNA中的一些序列完全处于B型,其他序列则完全处于改变的、不可甲基化的构象,而还有一些位点似乎部分处于改变的构象,部分处于正常的B构象。一些少于七个碱基对的潜在Z型形成序列(嘧啶/嘌呤交替)在V型DNA中并非处于Z构象,而其他一些则确实采用了改变的结构,这表明侧翼序列具有调节作用。此外,嘧啶/嘌呤不完全交替结构的区域有时能够采用改变的结构。另外,一些结构改变的区域没有明显的Z型形成序列,也不在多嘌呤区段中,多嘌呤区段也被认为会形成左手DNA。这些非B-DNA构象可能代表新型的左手螺旋结构或在扭转应变下会变成单链的序列。并非总能观察到长区域的改变(不可甲基化)DNA或B-DNA。事实上,一个区域在26个碱基对内显示出B样DNA和改变结构之间的三次转变。

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