Cone snail species off the Brazilian coast and their venoms: a review and update.

IF 1.8 3区 医学 Q4 TOXICOLOGY
Helena B Fiorotti, Suely G Figueiredo, Fabiana V Campos, Daniel C Pimenta
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引用次数: 1

Abstract

The genus Conus includes over 900 species of marine invertebrates known as cone snails, whose venoms are among the most powerful described so far. This potency is mainly due to the concerted action of hundreds of small bioactive peptides named conopeptides, which target different ion channels and membrane receptors and thus interfere with crucial physiological processes. By swiftly harpooning and injecting their prey and predators with such deadly cocktails, the slow-moving cone snails guarantee their survival in the harsh, competitive marine environment. Each cone snail species produces a unique venom, as the mature sequences of conopeptides from the venoms of different species share very little identity. This biochemical diversity, added to the numerous species and conopeptides contained in their venoms, results in an immense biotechnological and therapeutic potential, still largely unexplored. That is especially true regarding the bioprospection of the venoms of cone snail species found off the Brazilian coast - a region widely known for its biodiversity. Of the 31 species described in this region so far, only four - Conus cancellatus, Conus regius, Conus villepinii, and Conus ermineus - have had their venoms partially characterized, and, although many bioactive molecules have been identified, only a few have been actually isolated and studied. In addition to providing an overview on all the cone snail species found off the Brazilian coast to date, this review compiles the information on the structural and pharmacological features of conopeptides and other molecules identified in the venoms of the four aforementioned species, paving the way for future studies.

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巴西海岸的锥螺种类及其毒液:回顾与更新。
圆锥螺属包括900多种被称为圆锥螺的海洋无脊椎动物,其毒液是迄今为止所描述的最强大的。这种效力主要是由于数百种被称为conopeptides的小生物活性肽的协同作用,它们靶向不同的离子通道和膜受体,从而干扰关键的生理过程。通过迅速用鱼叉向猎物和捕食者注射这种致命的鸡尾酒,缓慢移动的锥螺确保了它们在严酷、竞争激烈的海洋环境中生存下来。每一种锥螺都产生一种独特的毒液,因为来自不同物种毒液的成熟肽序列几乎没有相同之处。这种生物化学的多样性,再加上它们毒液中所含的众多物种和con多肽,产生了巨大的生物技术和治疗潜力,但在很大程度上仍未得到开发。对于在巴西海岸发现的锥螺物种的毒液的生物前景来说,这一点尤其正确——巴西海岸是一个以生物多样性闻名的地区。到目前为止,在该地区所描述的31种圆锥虫中,只有4种圆锥虫(Conus cancellatus, Conus regius, Conus villepinii和Conus ermineus)的毒液被部分鉴定出来,尽管已经鉴定出许多生物活性分子,但真正被分离和研究的只有少数。除了对迄今为止在巴西海岸发现的所有锥螺物种进行概述外,本综述还汇编了上述四种物种毒液中鉴定的con多肽和其他分子的结构和药理特征信息,为今后的研究铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.80
自引率
8.30%
发文量
39
审稿时长
6-12 weeks
期刊介绍: Journal of Venomous Animals and Toxins including Tropical Diseases (JVATiTD) is a non-commercial academic open access publication dedicated to research on all aspects of toxinology, venomous animals and tropical diseases. Its interdisciplinary content includes original scientific articles covering research on toxins derived from animals, plants and microorganisms. Topics of interest include, but are not limited to:systematics and morphology of venomous animals;physiology, biochemistry, pharmacology and immunology of toxins;epidemiology, clinical aspects and treatment of envenoming by different animals, plants and microorganisms;development and evaluation of antivenoms and toxin-derivative products;epidemiology, clinical aspects and treatment of tropical diseases (caused by virus, bacteria, algae, fungi and parasites) including the neglected tropical diseases (NTDs) defined by the World Health Organization.
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