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首页> 外文期刊>Journal of Nanobiotechnology >Proteome interrogation using gold nanoprobes to identify targets of arctigenin in fish parasites
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Proteome interrogation using gold nanoprobes to identify targets of arctigenin in fish parasites

机译:蛋白质组询问使用金纳米素鉴定鱼寄生虫中的芳粒素的靶标

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摘要

Gold nanoparticles (GNPs) are one of the most widely used nanomaterials in various fields. Especially, the unique chemical and physical properties make them as the promising candidates in drug target identification, unfortunately, little is known about their application in parasites. In this paper, GNPs were employed as new solid support to identify drug targets of natural bioactive compound arctigenin (ARG) against fish monogenean parasite Gyrodactylus kobayashi. Before target identification, GNPs with ARG on the surface showed the ability to enter the live parasites even the nucleus or mitochondria, which made the bound compounds capable of contacting directly with target proteins located anywhere of the parasites. At the same time, chemically modified compound remained the anthelminthic efficacy against G. kobayashii. The above results both provide assurance on the reliability of using GNPs for drug target-binding specificity. Subsequently, by interrogating the cellular proteome in parasite lysate, myosin-2 and UNC-89 were identified as the potential direct target proteins of ARG in G. kobayashii. Moreover, results of RNA-seq transcriptomics and iTRAQ proteomics indicated that myosin-2 expressions were down-regulated after ARG bath treatment both in transcript and protein levels, but for UNC-89, only in mRNA level. Myosin-2 is an important structural muscle protein expressed in helminth tegument and its identification as our target will enable further inhibitor optimization towards future drug discovery. Furthermore, our findings demonstrate the power of GNPs to be readily applied to other parasite drugs of unknown targets, facilitating more broadly therapeutic drug design in any pathogen or disease model.
机译:金纳米颗粒(GNP)是各个领域中最广泛使用的纳米材料之一。特别是,独特的化学和物理性质使它们成为药物目标识别中有希望的候选者,不幸的是,对其在寄生虫中的应用很少。在本文中,使用GNPS作为新的固体载体,以鉴定天然生物活性化合物芳樟酮(Arg)的药物靶向鱼单生寄生虫寄生虫吡哆啶kobayashi。在靶标鉴定之前,表面上的GNP均显示出甚至核或线粒体进入活寄生虫的能力,这使得能够直接与位于寄生虫的任何地方的靶蛋白直接接触的结合化合物。同时,化学改性化合物仍然是针对G. Kobayashii的肌肉疗效。以上结果既提供了对使用GNP的可靠性的保证,用于药物靶标结合特异性。随后,通过询问寄生虫裂解物中的细胞蛋白质组,肌素-2和UNC-89被鉴定为arg的潜在直接靶蛋白在G. Kobayashii中。此外,RNA-SEQ转录组和ITRAQ蛋白质组学的结果表明,在转录物和蛋白质水平的Arg浴治疗后,肌素-2表达均下调,但对于UNC-89,仅在mRNA水平中。肌球蛋白-2是在Helminth Tegument中表达的重要结构肌肉蛋白及其鉴定,因为我们的目标将使进一步的抑制剂优化对未来的药物发现。此外,我们的研究结果证明了GNPS的力量容易应用于未知靶标的其他寄生虫药物,促进任何病原体或疾病模型中的更广泛治疗药物设计。

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