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Thermodynamics of specific and nonspecific DNA binding by two DNA-binding domains conjugated to fluorescent probes.

机译:通过与荧光探针偶联的两个DNA结合结构域的特异性和非特异性DNA结合的热力学。

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摘要

The complexes designed in this work combine the sequence-specific binding properties of helix-turn-helix DNA-binding motifs with intercalating cyanine dyes. Thermodynamics of the Hin recombinase and Tc3 transposase DNA-binding domains with and without the conjugated dyes were studied by fluorescence techniques to determine the contributions to specific and nonspecific binding in terms of the polyelectrolyte and hydrophobic effects. The roles of the electrostatic interactions in binding to the cognate and noncognate sequences indicate that nonspecific binding is more sensitive to changes in salt concentration, whereas the change in the heat capacity shows a greater sensitivity to temperature for the sequence-specific complexes in each case. The conjugated dyes affect the Hin DNA-binding domain by acting to anchor a short stretch of amino acids at the N-terminal end into the minor groove. In contrast, the N-terminal end of the Tc3 DNA-binding domain is bound in a well-ordered fashion to the DNA even in the absence of the conjugated dye. The conjugated dye and the DNA-binding domain portions of each conjugate bind noncooperatively to the DNA. The characteristic thermodynamic parameters of specific and nonspecific DNA binding by each of the DNA-binding domains and their respective conjugates are presented.
机译:在这项工作中设计的配合物结合了螺旋-转-螺旋-DNA结合基序与嵌入的花菁染料的序列特异性结合特性。通过荧光技术研究了有和没有共轭染料的Hin重组酶和Tc3转座酶DNA结合域的热力学,以确定在聚电解质和疏水作用方面对特异性和非特异性结合的贡献。静电相互作用在与同源序列和非同源序列结合中的作用表明,在每种情况下,非特异性结合对盐浓度的变化更为敏感,而热容量的变化则对序列特异性复合物显示出对温度的更大敏感性。共轭染料通过在N末端将一小段氨基酸锚定到小沟中来影响Hin DNA结合结构域。相反,即使在没有共轭染料的情况下,Tc3 DNA结合结构域的N-末端也以有序的方式与DNA结合。结合的染料和每种结合物的DNA结合结构域部分非合作地结合至DNA。给出了每个DNA结合域及其各自的结合物特异性和非特异性DNA结合的特征热力学参数。

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