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四重插入G-6堆积:果蝇着丝粒十二聚体卫星回折结构中的一种可能基序?

Quadruple intercalated G-6 stack: a possible motif in the fold-back structure of the Drosophila centromeric dodeca-satellite?

作者信息

Chou S H, Chin K H

机构信息

Institute of Biochemistry, National Chung-Hsing University, Taichung 40227, Taiwan.

出版信息

J Mol Biol. 2001 Nov 16;314(1):139-52. doi: 10.1006/jmbi.2001.5131.

Abstract

The purine-rich strand d(GTACGGGACCGA)(n) of the Drosophila centromeric dodeca-satellite sequence is highly conserved and was found to form stable fold-back structures in which the homopurine 5'-GGGA-3' sequence was determined to play a crucial role. Here, we report the stable formation of the d(GGGA)(2) motif in the stem of a DNA hairpin closed by a single-residue d(ACC) loop. Similar to the zipper-like d(GGA)(2) motif observed in the human centromeric (TGGAA)(n) sequence, the central four guanosine bases in the d(GGGA)(2) motif do not pair, but interdigitate to form an elongated zipper-like quadruple-intercalated G-6 stack bracketed by sheared G.A base-pairs. Comparison between the current d(GGGA)(2) structure and the published crystal d(GAAA)(2) structure implies that the alignment of the unpaired purine bases plays an important role in determining the minor groove width of the purine-rich d(GPuPuA)(2) motif. Similarity between the zipper-like motifs possibly present in the Drosophila centromeric dodeca-satellite sequence and in the human centromeric (TGGAA)(n) sequence led us to propose that these special zipper-like motifs may constitute common cores in organizing eukaryotic centromeres.

摘要

果蝇着丝粒十二聚体卫星序列富含嘌呤的链d(GTACGGGACCGA)(n)高度保守,并且发现其能形成稳定的回折结构,其中同型嘌呤5'-GGGA-3'序列被确定起着关键作用。在此,我们报道了在由单残基d(ACC)环封闭的DNA发夹茎中d(GGGA)(2)基序的稳定形成。类似于在人类着丝粒(TGGAA)(n)序列中观察到的拉链样d(GGA)(2)基序,d(GGGA)(2)基序中的中央四个鸟嘌呤碱基不配对,而是相互交错形成一个由剪切的G.A碱基对包围的拉长的拉链样四重插入G-6堆积。当前的d(GGGA)(2)结构与已发表的晶体d(GAAA)(2)结构之间的比较表明,未配对嘌呤碱基的排列在决定富含嘌呤的d(GPuPuA)(2)基序的小沟宽度方面起着重要作用。果蝇着丝粒十二聚体卫星序列和人类着丝粒(TGGAA)(n)序列中可能存在的拉链样基序之间的相似性使我们提出,这些特殊的拉链样基序可能构成了组织真核生物着丝粒的共同核心。

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