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包含GGA三联体重复DNA的G:G:G:G四分体和G(:A):G(:A):G(:A):G七联体的平行四链体的分子内高阶堆积。

Intramolecular higher order packing of parallel quadruplexes comprising a G:G:G:G tetrad and a G(:A):G(:A):G(:A):G heptad of GGA triplet repeat DNA.

作者信息

Matsugami Akimasa, Okuizumi Tomoyuki, Uesugi Seiichi, Katahira Masato

机构信息

Department of Environment and Natural Sciences, Graduate School of Environment and Information Sciences, Yokohama National University, 79-7 Tokiwadai, Hodogaya-ku, Yokohama 240-8501, Japan.

出版信息

J Biol Chem. 2003 Jul 25;278(30):28147-53. doi: 10.1074/jbc.M303694200. Epub 2003 May 14.

Abstract

GGA triplet repeats are widely dispersed throughout eukaryotic genomes and are frequently located within biologically important regions such as gene regulatory regions and recombination hot spot sites. We determined the structure of d(GGA)4 (12-mer) under physiological conditions and founded the formation of an intramolecular parallel quadruplex for the first time. Later, a similar architecture to that of the intramolecular parallel quadruplex was found for a telomere DNA in the crystalline state. Here, we have determined the structure of d(GGA)8 (24-mer) under physiological conditions. Two intramolecular parallel quadruplexes comprising a G:G:G:G tetrad and a G(:A):G(:A):G(:A):G heptad are formed in d(GGA)8. These quadruplexes are packed in a tail-to-tail manner. This is the first demonstration of the intramolecular higher order packing of quadruplexes at atomic resolution. K+ ions, but not Na+ ones, are critically required for the formation of this unique structure. The elucidated structure suggests the mechanisms underlying the biological events related to the GGA triplet repeat. Furthermore, in the light of the structure, the mode of the higher order packing of the telomere DNA is discussed.

摘要

GGA三联体重复序列广泛分布于真核生物基因组中,且经常位于生物学重要区域,如基因调控区和重组热点位点。我们在生理条件下确定了d(GGA)4(12聚体)的结构,并首次发现了分子内平行四链体的形成。后来,在晶体状态下的端粒DNA中发现了与分子内平行四链体类似的结构。在此,我们在生理条件下确定了d(GGA)8(24聚体)的结构。在d(GGA)8中形成了两个由G:G:G:G四联体和G(:A):G(:A):G(:A):G七联体组成的分子内平行四链体。这些四链体以尾对尾的方式堆积。这是首次在原子分辨率下证明四链体的分子内高阶堆积。形成这种独特结构至关重要地需要K+离子,而不是Na+离子。阐明的结构揭示了与GGA三联体重复相关的生物学事件的潜在机制。此外,根据该结构,还讨论了端粒DNA的高阶堆积模式。

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