Madden K R, Stewart L, Champoux J J
Department of Microbiology, School of Medicine, University of Washington, Seattle 98195-7242, USA.
EMBO J. 1995 Nov 1;14(21):5399-409. doi: 10.1002/j.1460-2075.1995.tb00224.x.
Eukaryotic type I DNA topoisomerase provides swivels for removing torsional strain from the DNA helix during transcription and DNA replication. Previously it has been shown that the enzyme is associated with actively transcribed genes and replicating DNA. Using an inactive mutant form of the protein containing phenylalanine instead of tyrosine at position 723, we have investigated the binding properties of the protein as a function of substrate topology. A series of filter binding assays indicated that the protein strongly prefers to bind superhelical over completely relaxed SV40 DNA. The ability of a supercoiled DNA to compete against a relaxed DNA for binding increases as the number of superhelical turns in the DNA increases. Since positively supercoiled DNA is bound with the same preference as negatively supercoiled DNA, we hypothesize that topoisomerase I binds preferentially at the nodes created by the crossing of two duplex helices. The preference for binding superhelical DNA is also exhibited by the conserved core domain (amino acids 175-659) which is missing the active site region located near the C-terminus. These results suggest that this core domain may target the enzyme in vivo to regions of torsionally strained superhelical DNA.
真核生物I型DNA拓扑异构酶在转录和DNA复制过程中为消除DNA螺旋的扭转张力提供旋转点。此前已表明该酶与活跃转录的基因及复制中的DNA相关联。我们使用一种在723位含苯丙氨酸而非酪氨酸的无活性突变形式的蛋白质,研究了该蛋白质作为底物拓扑结构函数的结合特性。一系列滤膜结合试验表明,该蛋白质强烈倾向于结合超螺旋的而非完全松弛的SV40 DNA。随着DNA中超螺旋圈数增加,超螺旋DNA与松弛DNA竞争结合的能力增强。由于正超螺旋DNA与负超螺旋DNA的结合偏好相同,我们推测拓扑异构酶I优先结合由两条双链螺旋交叉形成的节点处。保守的核心结构域(氨基酸残基175 - 659)也表现出对超螺旋DNA的结合偏好,该结构域缺少位于C端附近的活性位点区域。这些结果表明,该核心结构域可能在体内将酶靶向到扭转应变超螺旋DNA区域。