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松弛DNA中稳定B/Z和B/Z/B连接的碱基序列标准及笛卡尔坐标。

Base sequence criteria and Cartesian coordinates for stable B/Z and B/Z/B junctions in relaxed DNA.

作者信息

Dai Z, Dauchez M, Thomas G, Peticolas W L

机构信息

Department of Chemistry, University of Oregon, Eugene 97403.

出版信息

J Biomol Struct Dyn. 1992 Jun;9(6):1155-83. doi: 10.1080/07391102.1992.10507985.

Abstract

It seems increasingly evident that if the Z form of DNA exists in the genome it must exist as short sections of alternating pyrimidine-purine sequences in the midst of very long sections of B-form DNA. We have determined the minimum length of a string of alternating CG base pairs that can go into the Z form in the middle of a long B form. Self-complimentary oligomers of the form T(M)(CG)(N)A(M) were synthesized. The conformation of the resulting duplex was determined in 6M aqueous NaCl solution by Raman scattering. We have found that 12 alternating CG base pairs is the minimum length required to form a stable Z form of DNA inside of a long B form section. Only the 4 center CG base pairs go into the Z form. These 4 CG base pairs in the Z form are flanked on each side by 4 CG base pairs in a non-Z (probably B) form as well as the ..TT.. ..AA.. sequences in the B form. We propose a model of the B/Z junction in which the double helix flips directly from the B form to the Z form so that there are no base pairs in the junction. In this model the B form is nucleated in the AT base pairs on each end and is propagated into the CG base pairs in the center. This model is supported by isotopic H/D exchange experiments that shows that the H/D exchange of the non-Z form CG base pairs is highly retarded and indicates that they remain in the B form. A Thermodynamic analysis of the concentration dependence of the melting point of the duplexes in both low and high salt, supports our model and rules out the possibility of hairpin formation. The enthalpy for the formation of a B/Z junction is determined to be about +16 kcal/junction. A comparison of these results with recent results on B/Z junctions in super-coiled DNA is given. Molecular modeling calculations permit us to obtain values for the coordinates and torsional angles of the oligomers showing both B/Z and B/Z/B junctions. The Cartesian coordinates for these oligomers as well as stereo figures of these models in color are available from the authors.

摘要

越来越明显的是,如果基因组中存在Z型DNA,那么它必定以交替嘧啶 - 嘌呤序列的短片段形式存在于非常长的B型DNA片段中间。我们已经确定了在长B型中间能够转变为Z型的交替CG碱基对序列的最小长度。合成了T(M)(CG)(N)A(M)形式的自互补寡聚物。通过拉曼散射在6M氯化钠水溶液中确定所得双链体的构象。我们发现12个交替的CG碱基对是在长B型片段内部形成稳定Z型DNA所需的最小长度。只有中间的4个CG碱基对转变为Z型。Z型的这4个CG碱基对两侧各有4个非Z型(可能是B型)的CG碱基对以及B型中的..TT.. ..AA..序列。我们提出了一个B/Z连接点模型,其中双螺旋直接从B型翻转到Z型,使得连接点处没有碱基对。在这个模型中,B型在两端的AT碱基对处成核,并延伸到中间的CG碱基对。同位素H/D交换实验支持了这个模型,该实验表明非Z型CG碱基对的H/D交换受到高度抑制,表明它们保持在B型。对双链体在低盐和高盐条件下熔点浓度依赖性的热力学分析支持了我们的模型,并排除了发夹形成的可能性。确定形成一个B/Z连接点的焓约为 +16千卡/连接点。将这些结果与超螺旋DNA中B/Z连接点的近期结果进行了比较。分子建模计算使我们能够获得显示B/Z和B/Z/B连接点的寡聚物的坐标和扭转角值。作者可提供这些寡聚物的笛卡尔坐标以及这些彩色模型的立体图。

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