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In vitro evaluation of the conjugations of neonicotinoids with transport protein: photochemistry, ligand docking and molecular dynamics studies

机译:用运输蛋白质的新烟白素缀合的体外评价:光化学,配体对接和分子动力学研究

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The main objective of this study was to assess the biological effects of neonicotinoids, together with their structure-activity relationships, by employing plasma albumin as a non-target model. Fluorescence indicated clearly that static-type quenching is the effective mechanism for the reduction of Trp-214 residue emission when c(neonicotinoid) <= 10 mu M, yet both static and dynamic properties occurred in the system if the concentration was higher than 10 mu M. The stoichiometric proportion of protein to neonicotinoid is obviously 1 : 1, and subdomain IIA was discovered to possess high affinity for these chemicals. This corroborates molecular docking, site-directed mutagenesis, molecular dynamics simulations and free-energy calculations, which show that neonicotinoids are present at the warfarin-azapropazone site and yield hydrogen bonds, pi-pi stacking and hydrophobic interactions with several pivotal amino acid residues, i.e. Phe-211, Trp-214 and Arg-222. These noncovalent bonds caused partial conformational changes in the protein, that is, alpha-helix content decreased from 55.9% to 48.5% along with an increase in the contents of beta-sheet, turn and random coil, as derived from synchronous fluorescence and circular dichroism. This phenomenon agrees well with the outcomes of the assignment of protein secondary structure. According to analyses of structure-activity relationships, it can be observed that neonicotinoids with the ring-closed structure (part B), e.g., imidacloprid and thiacloprid, have relatively low affinity for proteins compared with some ring-open agents such as nitenpyram and acetamiprid. These disparities may be related to the fact that ring-open neonicotinoids have great flexibility and thus take part more easily in noncovalent interactions with the amino acid residues in the active cavity. In addition, the toxicological relevance of the biorecognition of neonicotinoids by a biopolymer is also investigated here. Perhaps this investigation could use a nontarget biological model for the evaluation of neonicotinoid toxicity and might also provide helpful clues for the synthesis of novel neonicotinoid agents.
机译:本研究的主要目的是通过使用血浆白蛋白作为非目标模型来评估Neonicotinoids的生物学效应与它们的结构活性关系。荧光表明,当C(Neonicotinoid)<=10μm时,静态淬火是减少TRP-214残基发射的有效机制,如果浓度高于10μm,则在系统中发生静态和动态性能M.蛋白质对新单烟碱素的化学计量比例显然是1:1,并且发现亚域IIA对这些化学品具有高亲和力。这种证实分子对接,定向诱变,分子动力学模拟和自由能量计算,表明Neonicotinoids存在于Warfarin-Azapropazone位点并产生氢键,PI-PI堆叠和与几种枢轴氨基酸残基的疏水相互作用。即PHE-211,TRP-214和ARG-222。这些非共价键在蛋白质中引起部分构象变化,即α-螺旋含量从55.9%降至48.5%,随着β-片状,转弯和随机线圈的含量增加,如来自同步荧光和圆形二色性的含量。这种现象与蛋白质二级结构分配的结果一致。根据结构 - 活性关系的分析,可以观察到具有闭环结构(B),例如吡虫啉和噻吩的奈彻霉素对蛋白质的亲和力相比,与诸如NitenPyram和acetamiprid等一些环开剂相比。这些差异可能与振铃开放的新烟碱素具有很大的柔韧性的事实有关,因此在与活性腔中的氨基酸残基中的非共价相互作用中更容易进入。此外,这里还研究了生物聚合物的生物烟碱的生物释认的毒理学相关性。也许这项调查可以利用Nontarget生物学模型来评估新烟碱毒性毒性,并且还可以为合成新的新烟碱类药物提供有用的线索。

著录项

  • 来源
    《RSC Advances 》 |2016年第3期| 共18页
  • 作者

    Peng Wei; Ding Fei; Peng Yu-Kui;

  • 作者单位

    Qingdao Agr Univ Coll Agr &

    Plant Protect Qingdao 266109 Peoples R China;

    Qingdao Agr Univ Coll Agr &

    Plant Protect Qingdao 266109 Peoples R China;

    Northwest A&

    F Univ Ctr Food Qual Supervis &

    Testing Minist Agr Coll Food Sci &

    Engn Yangling 712100 Peoples R China;

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

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