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Spider and Wasp Acylpolyamines: Venom Components and Versatile Pharmacological Leads Probes and Insecticidal Agents

机译:蜘蛛和黄蜂酰基多胺:毒液成分和多功能药理学先导物、探针和杀虫剂

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摘要

Polyamines (PAs) are polycationic biogenic amines ubiquitously present in all life forms and are involved in molecular signaling and interaction, determining cell fate (e.g., cell proliferation, dif-ferentiation, and apoptosis). The intricate balance in the PAs’ levels in the tissues will determine whether beneficial or detrimental effects will affect homeostasis. It’s crucial to note that endoge-nous polyamines, like spermine and spermidine, play a pivotal role in our understanding of neu-rological disorders as they interact with membrane receptors and ion channels, modulating neuro-transmission. In spiders and wasps, monoamines (histamine, dopamine, serotonin, tryptamine) and polyamines (spermine, spermidine, acyl polyamines) comprise, with peptides and other sub-stances, the low molecular weight fraction of the venom. Acylpolyamines are venom components exclusively from spiders and a species of solitary wasp, which cause inhibition chiefly of iono-tropic glutamate receptors (AMPA, NMDA, and KA iGluRs) and nicotinic acetylcholine receptors (nAChRs). The first venom acylpolyamines ever discovered (argiopines, Joro and Nephila toxins, and philanthotoxins) have provided templates for the design and synthesis of numerous analogs. Thus far, analogs with high potency exert their effect at nanomolar concentrations, with high se-lectivity toward their ionotropic and ligand receptors. These potent and selective acylpolyamine analogs can serve biomedical purposes and pest control management. The structural modification of acylpolyamine with photolabile and fluorescent groups converted these venom toxins into use-ful molecular probes to discriminate iGluRs and nAchRs in cell populations. In various cases, the linear polyamines, like spermine and spermidine, constituting venom acyl polyamine backbones, have served as cargoes to deliver active molecules via a polyamine uptake system on diseased cells for targeted therapy. In this review, we examined examples of biogenic amines that play an essential role in neural homeostasis and cell signaling, contributing to human health and disease outcomes, which can be present in the venom of arachnids and hymenopterans. With an empha-sis on the spider and wasp venom acylpolyamines, we focused on the origin, structure, derivatiza-tion, and biomedical and biotechnological application of these pharmacologically attractive, chemically modular venom components.
机译:多胺 (PAs) 是普遍存在于所有生命形式的多阳离子生物胺,参与分子信号传导和相互作用,决定细胞命运(例如,细胞增殖、差异受精和细胞凋亡)。组织中 PA 水平的复杂平衡将决定有益还是有害的影响会影响体内平衡。需要注意的是,内生多胺,如精胺和亚精胺,在我们理解神经疾病方面起着关键作用,因为它们与膜受体和离子通道相互作用,调节神经传递。在蜘蛛和黄蜂中,单胺(组胺、多巴胺、血清素、色胺)和多胺(精胺、亚精胺、酰基多胺)与肽和其他物质一起构成毒液的低分子量部分。酰基多胺是完全来自蜘蛛和一种独居黄蜂的毒液成分,主要抑制嗜离子谷氨酸受体(AMPA、NMDA 和 KA iGluR)和烟碱乙酰胆碱受体 (nAChRs)。有史以来发现的第一个毒液酰基多胺(精氨酸、Joro 和 Nephila 毒素以及philanthotoxins)为许多类似物的设计和合成提供了模板。到目前为止,具有高效力的类似物在纳摩尔浓度下发挥作用,对其离子型和配体受体具有很高的合成性。这些有效的选择性酰基多胺类似物可用于生物医学目的和害虫防治管理。具有光不稳定基团和荧光基团的酰基多胺的结构修饰将这些毒液毒素转化为有用的分子探针,以区分细胞群中的 iGluR 和 nAchR。在各种情况下,构成毒液酰基多胺骨架的线性多胺,如精胺和亚精胺,已作为货物,通过多胺摄取系统将活性分子输送到患病细胞上以进行靶向治疗。在这篇综述中,我们研究了在神经稳态和细胞信号传导中起重要作用的生物胺的例子,这些胺有助于人类健康和疾病结果,这些胺可能存在于蛛形纲动物和膜翅目动物的毒液中。我们重点介绍蜘蛛和黄蜂毒液酰基多胺,重点关注这些药理学上具有吸引力的化学模块化毒液成分的来源、结构、衍生以及生物医学和生物技术应用。

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