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真核生物拓扑异构酶II对DNA门控开关的单分子测量

Single-molecule measurements of the opening and closing of the DNA gate by eukaryotic topoisomerase II.

作者信息

Smiley R Derike, Collins Tammy R L, Hammes Gordon G, Hsieh Tao-Shih

机构信息

Department of Biochemistry, Duke University Medical Center, Durham, NC 27710, USA.

出版信息

Proc Natl Acad Sci U S A. 2007 Mar 20;104(12):4840-5. doi: 10.1073/pnas.0700342104. Epub 2007 Mar 14.

Abstract

Type II DNA topoisomerases are essential and ubiquitous enzymes that perform important functions in chromosome condensation and segregation and in regulating intracellular DNA supercoiling. Topoisomerases carry out these DNA transactions by passing one segment of DNA through the other by using a reversible, enzyme-bridged double strand break. The transient enzyme/DNA adduct is mediated by a phosphodiester bond between the active-site tyrosine and a backbone phosphate of DNA. The opening and closing of the DNA gate, a critical step for strand passage during the catalytic cycle, is coupled to this cleavage/religation. We designed a unique oligonucleotide substrate with a pair of fluorophores straddling the topoisomerase II cleavage site, allowing the use of FRET to monitor the opening of the DNA gate. The DNA substrate undergoes an enzyme-mediated transition between a closed and open state in the presence of ATP, similar to the overall topoisomerase II catalyzed reaction. Single-molecule fluorescence microscopy measurements demonstrate that the transition has comparable rate constants for both the opening and closing reaction during steady-state ATP hydrolysis, with an apparent equilibrium constant near unity. In the presence of AMPPNP, a reduction in FRET occurs, suggesting an opening or partial opening of the DNA gate. However, the single-molecule experiments indicate that the open and closed states do not interconvert at a measurable rate.

摘要

II型DNA拓扑异构酶是必不可少且普遍存在的酶,在染色体浓缩、分离以及调节细胞内DNA超螺旋方面发挥着重要作用。拓扑异构酶通过利用可逆的、酶桥连的双链断裂使一段DNA穿过另一段DNA来进行这些DNA交易。瞬时酶/DNA加合物由活性位点酪氨酸与DNA主链磷酸之间的磷酸二酯键介导。DNA门的打开和关闭是催化循环中链通过的关键步骤,与这种切割/重新连接相耦合。我们设计了一种独特的寡核苷酸底物,其一对荧光团横跨拓扑异构酶II切割位点,允许使用荧光共振能量转移(FRET)来监测DNA门的打开。在ATP存在下,DNA底物会经历酶介导的从闭合状态到开放状态的转变,这类似于整体拓扑异构酶II催化的反应。单分子荧光显微镜测量表明,在稳态ATP水解过程中,这种转变在打开和关闭反应中具有相当的速率常数,表观平衡常数接近1。在存在AMPPNP的情况下,FRET降低,表明DNA门打开或部分打开。然而,单分子实验表明,开放状态和闭合状态不会以可测量的速率相互转换。

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