BioElectronic Vision Lab, University of Michigan, Ann Arbor, Michigan, United States of America.
Rise Technology S.r.l., Rome, Italy.
PLoS One. 2019 Aug 27;14(8):e0221685. doi: 10.1371/journal.pone.0221685. eCollection 2019.
Electric fields can be a powerful tool to interact with enzymes or proteins, with an intriguing perspective to allow protein manipulation. Recently, researchers have focused the interest on intracellular enzyme modifications triggered by the application of nanosecond pulsed electric fields. These findings were also supported by theoretical predictions from molecular dynamics simulations focussing on significant variations in protein secondary structures. In this work, a theoretical study utilizing molecular dynamics simulations is proposed to explore effects of electric fields of high intensity and very short nanosecond duration applied to the superoxide dismutase (Cu/Zn-SOD or SOD-1), an important enzyme involved in the cellular antioxidant defence mechanism. The effects of 100-nanosecond pulsed electric fields, with intensities ranging from 108 to 7x108 V/m, on a single SOD1 enzyme are presented. We demonstrated that the lowest intensity of 108 V/m, although not inducing structural changes, can produce electrostatic modifications on the reaction centre of the enzyme, as apparent from the dipolar response and the electric field distribution of the protein active site. Electric pulses above 5x108 V/m produced a fast transition between the folded and a partially denatured state, as inferred by the secondary structures analysis. Finally, for the highest field intensity used (7x108 V/m), a not reversible transition toward an unfolded state was observed.
电场可以成为与酶或蛋白质相互作用的有力工具,具有引人入胜的视角,可以实现蛋白质的操控。最近,研究人员将兴趣集中在纳秒脉冲电场应用触发的细胞内酶修饰上。这些发现也得到了分子动力学模拟的理论预测的支持,这些预测主要关注蛋白质二级结构的显著变化。在这项工作中,提出了一项利用分子动力学模拟的理论研究,以探索高强度和极短纳秒持续时间的电场对超氧化物歧化酶(Cu/Zn-SOD 或 SOD-1)的影响,该酶是参与细胞抗氧化防御机制的重要酶。研究了强度范围为 108 到 7x108 V/m 的 100 纳秒脉冲电场对单个 SOD1 酶的影响。我们证明了,尽管最低强度为 108 V/m 不会引起结构变化,但可以通过酶反应中心的偶极响应和蛋白质活性位点的电场分布,对其进行静电修饰。高于 5x108 V/m 的电脉冲会导致折叠态和部分变性态之间的快速转变,这可以从二级结构分析中推断出来。最后,对于使用的最高场强(7x108 V/m),观察到向无规卷曲状态的不可逆转转变。