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d(CCCCGGGG)的晶体结构:一种具有延伸主链构象的新型A 型变体。

The crystal structure of d(CCCCGGGG): a new A-form variant with an extended backbone conformation.

作者信息

Haran T E, Shakked Z, Wang A H, Rich A

机构信息

Dept. of Structural Chemistry, Weizmann Institute of Science, Rehovot,Israel.

出版信息

J Biomol Struct Dyn. 1987 Oct;5(2):199-217. doi: 10.1080/07391102.1987.10506390.

Abstract

The crystal structure of d(CCCCGGGG) has been determined at a resolution of 2.25 A. The oligomers crystallize as A-DNA duplexes occupying crystallographic two-fold axes. The backbone conformation is, in general, similar to that observed in previously reported crystal structures of A-DNA fragments, except for the central linkage, where it adopts an extended structure resulting from all trans conformation at the P-O5'-C5'-C4' bonds. This type of conformation facilitates interstrand stacking between the guanines at the C-G site. The local helix twist at this step is very small (25 degrees) compared to an overall average of 33.5 degrees. The unique structure of the C-G base-pair step, namely the extended backbone and the distinct stacking geometry, may be an important feature in the recognition mechanism between double-stranded DNA molecules and restriction endonucleases such as Msp I, which cuts the sequence CCGG very specifically with a rate unaffected by neighboring base pairs.

摘要

已确定d(CCCCGGGG)的晶体结构,分辨率为2.25埃。该寡聚物结晶为占据晶体学二重轴的A-DNA双链体。总体而言,主链构象与先前报道的A-DNA片段晶体结构中观察到的相似,但中心连接部位除外,在该部位它采用了由P-O5'-C5'-C4'键处的全反式构象导致的伸展结构。这种构象类型促进了C-G位点处鸟嘌呤之间的链间堆积。与总体平均33.5度相比,此步的局部螺旋扭转非常小(25度)。C-G碱基对步的独特结构,即伸展的主链和独特的堆积几何形状,可能是双链DNA分子与限制性内切酶(如Msp I)之间识别机制的一个重要特征,Msp I能非常特异性地切割序列CCGG,其切割速率不受相邻碱基对的影响。

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