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首页> 外文期刊>Biochemistry >Interaction of Human DNA Topoisomerase II alpha with DNA: Quantification by Surface Plasmon Resonance.
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Interaction of Human DNA Topoisomerase II alpha with DNA: Quantification by Surface Plasmon Resonance.

机译:人DNA拓扑异构酶IIα与DNA的相互作用:通过表面等离子体共振进行量化。

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摘要

DNA topoisomerase II is an ATP-operated clamp that effects topological changes by capturing a double-stranded DNA segment and transporting it through another duplex. Surface plasmon resonance (SPR) was used to characterize interactions of human topoisomerase II alpha with different topological forms of DNA. Using a linear fragment of pUC18 DNA, the equilibrium binding constant of topoisomerase II alpha was determined to be 0.16 nM. The affinity was not affected by the absence of ATP or the presence of the bisdioxopiperazine catalytic inhibitor ICRF-187. Besides, similar affinities were found for several bisdioxopiperazine-resistant mutant enzymes. These results suggest that the mechanism of topoisomerase II alpha inhibition by ICRF-187 and its resistance does not directly involve the interaction of DNA with the enzyme. SPR was also adapted to measure levels of the closed clamp form of topoisomerase II present on DNA. As expected, a stable closed clamp form of the enzyme was detectable on circular DNA but not on linear DNA. Detection of the closed clamp required the presence of ATP and a bisdioxopiperazine, or a non-hydrolyzable analogue of ATP. In the presence of ATP and ICRF-187, several bisdioxopiperazine-resistant mutant enzymes failed to form detectable levels of stable closed clamp. Interestingly, a mutant of human topoisomerase II alpha with an altered active site tyrosine showed lower levels of closed clamp formation. In conclusion, SPR is able to (1) determine the kinetics of topoisomerase II with its DNA substrate and (2) quantify the enzyme's closed clamp formation under varying circumstances.
机译:DNA拓扑异构酶II是ATP操作夹具,其通过捕获双链DNA链段并通过另一双链体将其输送来实现拓扑变化。表面等离子体共振(SPR)用于表征人拓扑异构酶IIα与不同拓扑形式的DNA相互作用。使用PUC18 DNA的线性片段,将拓扑异构酶IIα的平衡结合常数确定为0.16nm。亲和力不受ATP的不存在的影响或双氟哌哌嗪催化抑制剂ICRF-187的存在。此外,还发现了几种双氧基哌嗪抗性突变酶的类似亲和力。这些结果表明,ICRF-187的拓扑异构酶IIα抑制的机制及其抗性不直接涉及DNA与酶的相互作用。 SPR还适用于测量DNA上存在的Topoisomerase II的闭合夹形式的水平。如所预期的那样,在圆形DNA上可检测酶的稳定关闭钳位,但不在线性DNA上。检测闭合夹具需要存在ATP和双氧基哌嗪,或ATP的不可水解类似物。在ATP和ICRF-187的存在下,几种双氧基哌嗪抗性突变酶未能形成可检测的稳定封闭夹具水平。有趣的是,具有改变的活性位点酪氨酸的人拓扑异构酶IIα的突变体显示出较低的封闭钳位水平。总之,SPR能够(1)测定Topoisomerase II的动力学,其DNA底物和(2)在不同的情况下量化酶的闭合钳位。

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