首页> 外文期刊>RSC Advances >Alpha-hemolysin nanopore allows discrimination of the microcystins variants The authors dedicate this work to Dr Oleg Vladimirovich Krasilnikov (in memoriam).
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Alpha-hemolysin nanopore allows discrimination of the microcystins variants The authors dedicate this work to Dr Oleg Vladimirovich Krasilnikov (in memoriam).

机译:α-溶素纳米孔允许歧视微囊藻毒素变体,作者将这项工作献给Oleg Vladimirovich Krasilnikov(Memoriam)。

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摘要

Microcystins (MCs) are a class of cyclic heptapeptides with more than 100 variants produced by cyanobacteria present in surface waters. MCs are potent hepatotoxic agents responsible for fatal poisoning in animals and humans. Several techniques are employed in the detection of MCs, however, there is a shortage of methods capable of discriminating variants of MCs. In this work we demonstrate that the -hemolysin (HL) nanopore can detect and discriminate the variants (LR, YR and RR) of MCs in aqueous solution. The discrimination process is based on the analysis of the residence times of each variant of MCs within the unitary nanopore, as well as, on the amplitudes of the blockages in the ionic current flowing through it. Simulations of molecular dynamics and calculation of the electrostatic potential revealed that the variants of MCs present different charge distribution and correlated with the three patterns on the amplitudes of the blockages in the ionic current. Additionally, molecular docking analysis indicates different patterns of interaction of the variants of MCs with two specific regions of the nanopore. We conclude that HL nanopore can discriminate variants of microcystins by a mechanism based mainly on electrostatic interaction. Finally, we propose the use of nanopore-based technology as a promising method for analyzing microcystins in aqueous solutions.
机译:微囊辛(MCS)是一类循环庚肽,其具有超过100种变体的由表面水中产生的蓝细菌产生。 MCS是有效的肝毒性剂,负责动物和人类的致命中毒。在检测MCS的检测中采用了几种技术,但是存在能够判断MCS变体的方法。在这项工作中,我们证明 - 溶血素(HL)纳米孔可以在水溶液中检测和区分MCS的变体(LR,YR和RR)。辨别过程基于对整体纳米孔内的每个变体的停留时间的分析,以及在流过其流过的离子电流中的堵塞的幅度上的幅度。仿真分子动力学和静电电位的计算显示,MCS的变体存在不同的电荷分布,并与离子电流堵塞的幅度上的三个图案相关。另外,分子对接分析表明MCs变体与纳米孔的两个特定区域的不同模式不同。我们得出结论,HL Nanopore可以通过主要基于静电相互作用的机制来区分微囊藻的变体。最后,我们提出了使用基于纳米孔的技术作为分析水溶液中微囊藻的有希望的方法。

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  • 来源
    《RSC Advances》 |2019年第26期|共9页
  • 作者单位

    Univ Fed Pernambuco Dept Biofis &

    Radiobiol Ave Prof Moraes Rego S-N Cidade Univ BR-50670901 Recife PE Brazil;

    Univ Fed Pernambuco Dept Quim Fundamental Cidade Univ BR-50740560 Recife PE Brazil;

    Univ Fed Pernambuco Dept Quim Fundamental Cidade Univ BR-50740560 Recife PE Brazil;

    Univ Fed Pernambuco Dept Biofis &

    Radiobiol Ave Prof Moraes Rego S-N Cidade Univ BR-50670901 Recife PE Brazil;

    Univ Fed Pernambuco Dept Quim Fundamental Cidade Univ BR-50740560 Recife PE Brazil;

    Univ Fed Pernambuco Dept Biofis &

    Radiobiol Ave Prof Moraes Rego S-N Cidade Univ BR-50670901 Recife PE Brazil;

    Univ Fed Pernambuco Dept Biofis &

    Radiobiol Ave Prof Moraes Rego S-N Cidade Univ BR-50670901 Recife PE Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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