Role of flexibility and long range communication on the function of human topoisomerase I.

The Italian journal of biochemistry Pub Date : 2007-06-01
Giovanni Chillemi, Paola Fiorani, Alessandro Bruselles, Silvia Castelli, Alessia Campagna, Ofelia Sarra, Cinzia Tesauro, Monica Fiorentini, Oscar Vassallo, Ilda D'Annessa, Sabrina Santoleri, Alessandro Desideri
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Abstract

Eukaryotic topoisomerase I is an essential enzyme that regulates the changes in DNA topology, relaxing the superhelical tension associated with DNA replication, transcription and recombination. Human topoisomerase I is of significant medical interest being the only target of the antitumor drug camptothecin. The enzyme undergoes large conformational changes during its catalytic cycle and the knowedge of the degree of flexibility of the different regions provides an useful guide to the understanding of such movements. Molecular dynamics simulation is a well consolidated method for the investigation of structural and dynamic properties of proteins and nucleic acids and has been successfully applied to study the dynamical properties of the DNA-human topoisomerase complex. This review highlights some structural and dynamic properties of topoisomerase, obtained by MD simulations, that permits to explain the importance of flexibility in the modulation of the functional properties of the enzyme and in the transmission of communication between domains located far away one from each other.

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灵活性和远程通讯对人体拓扑异构酶I功能的作用。
真核生物拓扑异构酶I是一种调节DNA拓扑结构变化的重要酶,可以缓解与DNA复制、转录和重组相关的超螺旋张力。人类拓扑异构酶I是抗肿瘤药物喜树碱的唯一靶点,具有重要的医学意义。酶在其催化循环中经历了巨大的构象变化,对不同区域的灵活性程度的了解为理解这种运动提供了有用的指导。分子动力学模拟是研究蛋白质和核酸结构和动力学特性的一种很好的方法,并已成功地应用于研究dna -人拓扑异构酶复合物的动力学特性。这篇综述强调了通过MD模拟获得的拓扑异构酶的一些结构和动态特性,这些特性可以解释灵活性在酶的功能特性的调节以及在彼此相距很远的结构域之间的通信传输中的重要性。
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