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猎鱼锥螺利用生长抑素和胰岛素的模拟物来破坏猎物的葡萄糖稳态。

Fish-hunting cone snail disrupts prey's glucose homeostasis with weaponized mimetics of somatostatin and insulin.

机构信息

Department of Biomedical Sciences, University of Copenhagen, Blegdamsvej 3, DK-2200, Copenhagen N, Denmark.

Department of Biochemistry, University of Utah, 15 N Medical Drive, Salt Lake City, UT, 84112, USA.

出版信息

Nat Commun. 2024 Aug 20;15(1):6408. doi: 10.1038/s41467-024-50470-2.

Abstract

Venomous animals have evolved diverse molecular mechanisms to incapacitate prey and defend against predators. Most venom components disrupt nervous, locomotor, and cardiovascular systems or cause tissue damage. The discovery that certain fish-hunting cone snails use weaponized insulins to induce hypoglycemic shock in prey highlights a unique example of toxins targeting glucose homeostasis. Here, we show that, in addition to insulins, the deadly fish hunter, Conus geographus, uses a selective somatostatin receptor 2 (SSTR) agonist that blocks the release of the insulin-counteracting hormone glucagon, thereby exacerbating insulin-induced hypoglycemia in prey. The native toxin, Consomatin nG1, exists in several proteoforms with a minimized vertebrate somatostatin-like core motif connected to a heavily glycosylated N-terminal region. We demonstrate that the toxin's N-terminal tail closely mimics a glycosylated somatostatin from fish pancreas and is crucial for activating the fish SSTR. Collectively, these findings provide a stunning example of chemical mimicry, highlight the combinatorial nature of venom components, and establish glucose homeostasis as an effective target for prey capture.

摘要

有毒动物进化出了多种分子机制,以使猎物失去能力并防御捕食者。大多数毒液成分会破坏神经系统、运动系统和心血管系统,或导致组织损伤。某些以鱼为食的圆锥蜗牛使用武器化胰岛素在猎物中引起低血糖休克,这突出了一种针对葡萄糖稳态的独特毒素范例。在这里,我们表明,除了胰岛素,致命的鱼类猎手 Coneus geographus 还使用选择性生长抑素受体 2(SSTR)激动剂,该激动剂阻止胰岛素拮抗激素胰高血糖素的释放,从而使猎物中的胰岛素诱导性低血糖恶化。天然毒素 Consomatin nG1 存在于几种具有最小脊椎动物生长抑素样核心基序的蛋白形式中,与高度糖基化的 N 端区域相连。我们证明,毒素的 N 端尾巴与鱼类胰腺中的糖基化生长抑素非常相似,对于激活鱼类 SSTR 至关重要。总之,这些发现提供了一个令人震惊的化学模拟范例,突出了毒液成分的组合性质,并将葡萄糖稳态确立为猎物捕获的有效目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/660f/11336141/fd49141c39f1/41467_2024_50470_Fig1_HTML.jpg

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