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The wasp venom antimicrobial peptide polybia‐CP and its synthetic derivatives display antiplasmodial and anticancer properties

机译:黄蜂毒液抗菌肽肽Polybia-CP及其合成衍生物显示抗癌和抗癌性能

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The wasp venom‐derived antimicrobial peptide polybia‐CP has been previously shown to exhibit potent antimicrobial activity, but it is also highly toxic. Previously, using a physicochemical‐guided peptide design strategy, we reversed its toxicity while preserving and even enhancing its antibacterial properties. Here, we report on several additional unanticipated biological properties of polybia‐CP and derivatives, namely their ability to target Plasmodium sporozoites and cancer cells. We leverage a physicochemical‐guided approach to identify features that operate as functional hotspots making these peptides viable antiplasmodial and anticancer agents. Helical content and net positive charge are identified as key structural and physicochemical determinants for antiplasmodial activity. In addition to helicity and net charge, hydrophobicity‐related properties of polybia‐CP and derivatives were found to be equally critical to target cancer cells. We demonstrate that by tuning these physicochemical parameters, it is possible to design synthetic peptides with enhanced submicromolar antiplasmodial potency and micromolar anticancer activity. This study reveals novel and previously undescribed functions for Polybia‐CP and analogs. Additionally, we demonstrate that a physicochemical‐guided rational design strategy can be used for identifying functional hotspots in peptide molecules and for tuning structure–function to generate novel and potent new‐to‐nature therapies.
机译:WASP毒液衍生的抗微生物肽Polybia-CP已经示出了表现出有效的抗微生物活性,但它也是剧毒的。以前,使用物理化学引导的肽设计策略,我们在保持甚至增强其抗菌性质时逆转其毒性。在这里,我们报告了多层CP和衍生物的几种额外的意外的生物学性质,即它们靶向疟原虫孢子和癌细胞的能力。我们利用了物理化学引导方法来识别作为功能热点的功能,使这些肽可行的抗癌和抗癌剂。螺旋含量和净正电荷被鉴定为抗溶液活性的关键结构和物理化学决定因素。除了肝脏和净电荷之外,发现靶癌细胞的疏水性相关性和衍生物的特性同样至关重要。我们证明通过调整这些物理化学参数,可以设计具有增强的亚微粒溶液抗蛋白效力和微摩尔抗癌活性的合成肽。本研究揭示了多层染利素CP和类似物的新颖和以前未描述的功能。此外,我们表明,物理化学引导的理性设计策略可用于鉴定肽分子中的功能热点以及调整结构功能,以产生新颖的和有效的新的自然疗法。

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