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序列对DNA霍利迪连接体构象的影响。

Effect of sequence on the conformation of DNA holliday junctions.

作者信息

Hays Franklin A, Vargason Jeffrey M, Ho P Shing

机构信息

Department of Biochemistry and Biophysics, ALS 2011, Oregon State University, Corvallis, Oregon 97331, USA.

出版信息

Biochemistry. 2003 Aug 19;42(32):9586-97. doi: 10.1021/bi0346603.

Abstract

Structures of the DNA sequences d(CCGGCGCCGG) and d(CCAGTACbr(5)UGG) are presented here as four-way Holliday junctions in their compact stacked-X forms, with antiparallel alignment of the DNA strands. Thus, the ACC-trinucleotide motif, previously identified as important for stabilizing the junction, is now extended to PuCPy, where Pu is either an adenine or guanine, and Py is either a cytosine, 5-methylcytosine, or 5-bromouracil but not thymine nucleotide. We see that both sequence and base substituents affect the geometry of the junction in terms of the interduplex angle as well as the previously defined conformational variables, J(roll) (the rotation of the stacked duplexes about their respective helical axis) and J(slide) (the translational displacement of the stacked duplexes along their respective helical axis). The structures of the GCC and parent ACC containing junctions fall into a distinct conformational class that is relatively undistorted in terms of J(slide) and J(roll), with interduplex angles of 40-43 degrees. The substituted ACbr(5)U structure, however, is more akin to that of the distorted methylated ACm(5)C containing junction, with J(slide) (>or=2.3 A) and a similar J(roll) (164 degrees) opening the major groove-side of the junction, but shows a reduced interduplex angle. In contrast, the analogous d(CCAGTACTGG) sequence has to date been crystallized only as resolved B-DNA duplexes. This suggests that there is an electronic effect of substituents at the pyrimidine Py position on the stability of four-stranded junctions. The single-crystal structures presented here, therefore, show how sequence affects the detailed geometry, and subsequently, the associated stability and conformational dynamics of the Holliday junction.

摘要

本文展示了DNA序列d(CCGGCGCCGG)和d(CCAGTACbr(5)UGG)以紧密堆积的X形式呈现的四链霍利迪连接体结构,DNA链呈反平行排列。因此,先前被确定对稳定连接体很重要的ACC三核苷酸基序,现在扩展到PuCPy,其中Pu为腺嘌呤或鸟嘌呤,Py为胞嘧啶、5-甲基胞嘧啶或5-溴尿嘧啶,但不是胸腺嘧啶核苷酸。我们发现,序列和碱基取代基都会影响连接体的几何形状,包括双链间角度以及先前定义的构象变量J(roll)(堆积双链围绕各自螺旋轴的旋转)和J(slide)(堆积双链沿各自螺旋轴的平移位移)。含有GCC和母体ACC的连接体结构属于一个独特的构象类别,在J(slide)和J(roll)方面相对未变形,双链间角度为40 - 43度。然而,取代的ACbr(5)U结构更类似于含有扭曲甲基化ACm(5)C的连接体结构,其J(slide)(≥2.3 Å)和类似的J(roll)(164度)打开了连接体的大沟侧,但双链间角度减小。相比之下,类似的d(CCAGTACTGG)序列迄今为止仅以解析的B - DNA双链形式结晶。这表明嘧啶Py位置取代基的电子效应会影响四链连接体的稳定性。因此,本文展示的单晶结构表明序列如何影响详细的几何形状,进而影响霍利迪连接体的相关稳定性和构象动力学。

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