Fluorescence resonance energy transfer studies of U-shaped DNA molecules

Mike Lorenz , Alexander Hillisch , Stephan Diekmann
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引用次数: 13

Abstract

Fluorescence resonance energy transfer studies allow to determine global shape properties of nucleic acids and nucleoprotein complexes. In many DNA-protein complexes, the DNA is more or less bent and the degree of bending can be obtained by FRET. For example, the DNA in complex with the integration host factor (IHF) is kinked by approximately 160° building a U-shaped structure. The two DNA helix ends come close to one another in space in a distance range easily measurable by FRET. The global DNA structure of this complex can be mimicked by introducing two regions with unpaired bases (‘bulges’) into the DNA each producing a sharp kink of approximately 80°. These U-shaped DNA constructs were used to measure the electrostatic interaction of the two nearly parallel negatively charged DNA helix arms. The electrostatic repulsion between the helix arms, and as a consequence their distance, decreases with growing salt concentration of mono- or divalent cations. This experimental approach also allows the sensitive study of the local structure of DNA sequences positioned between the two bulges.

u型DNA分子的荧光共振能量转移研究
荧光共振能量转移研究允许确定核酸和核蛋白复合物的整体形状特性。在许多DNA-蛋白质复合物中,DNA或多或少是弯曲的,弯曲的程度可以通过FRET得到。例如,DNA与整合宿主因子(IHF)在复合体中形成约160°的“u”型结构。两个DNA螺旋末端在空间中彼此靠近,其距离范围很容易用FRET测量。这种复合体的整体DNA结构可以通过在DNA中引入两个碱基未配对的区域(“凸起”)来模拟,每个区域产生大约80°的尖锐扭转。这些u形DNA结构被用来测量两个几乎平行的带负电荷的DNA螺旋臂的静电相互作用。随着单价或二价阳离子盐浓度的增加,螺旋臂之间的静电斥力及其距离减小。这种实验方法也允许对位于两个凸起之间的DNA序列的局部结构进行敏感的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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