Institute of Biophysics, Academy of Sciences of the Czech Republic, Brno, Czech Republic.
FEBS J. 2014 Feb;281(4):987-97. doi: 10.1111/febs.12696. Epub 2014 Jan 13.
Bulged DNA structures are of general biological significance because of their important roles in a number of biochemical processes. Compounds capable of targeting bulged DNA sequences can be used as probes for studying their role in nucleic acid function, or could even have significant therapeutic potential. The interaction of Fe(2)L(3) metallosupramolecular helicates (L = C(25)H(20)N(4)) with DNA duplexes containing bulges has been studied by measurement of the DNA melting temperature and gel electrophoresis. This study was aimed at exploring binding affinities of the helicates for DNA bulges of various sizes and nucleotide sequences. The studies reported herein reveal that both enantiomers of Fe(2)L(3) bind to DNA bulges containing at least two unpaired nucleotides. In addition, these helicates show considerably enhanced affinity for duplexes containing unpaired pyrimidines in the bulge and/or pyrimidines flanking the bulge on both sides. We suggest that the bulge creates the structural motif, such as the triangular prismatic pocket formed by the unpaired bulge bases, to accommodate the Fe(2)L(3) helicate molecule, and is probably responsible for the affinity for duplexes with a varying number of bulge bases. Our results reveal that DNA bulges represent another example of unusual DNA structures recognized by dinuclear iron(II) (Fe(2)L(3)) supramolecular helicates.
膨出 DNA 结构具有普遍的生物学意义,因为它们在许多生化过程中起着重要作用。能够靶向膨出 DNA 序列的化合物可用作研究它们在核酸功能中的作用的探针,甚至可能具有重要的治疗潜力。通过测量 DNA 熔点和凝胶电泳研究了含有膨出物的 DNA 双链体与 Fe(2)L(3) 金属超分子螺旋体(L = C(25)H(20)N(4)) 的相互作用。这项研究旨在探索螺旋体与各种大小和核苷酸序列的 DNA 膨出的结合亲和力。本文报道的研究表明,Fe(2)L(3) 的两种对映异构体都与至少含有两个未配对核苷酸的 DNA 膨出结合。此外,这些螺旋体对含有膨出物中未配对嘧啶和/或两侧嘧啶侧翼的双链体显示出相当增强的亲和力。我们认为膨出物形成结构模体,例如由未配对膨出碱基形成的三角棱柱形口袋,以容纳Fe(2)L(3) 螺旋体分子,并且可能负责与具有不同数量膨出碱基的双链体的亲和力。我们的结果表明,DNA 膨出是二核铁(Fe(2)L(3))超分子螺旋体识别的另一种异常 DNA 结构的例子。