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修剪自然:从泡形芋螺中通过生物多样性发现新型钠通道阻断芋螺毒素

Pruning nature: Biodiversity-derived discovery of novel sodium channel blocking conotoxins from Conus bullatus.

作者信息

Holford Mandë, Zhang Min-Min, Gowd K Hanumae, Azam Layla, Green Brad R, Watkins Maren, Ownby John-Paul, Yoshikami Doju, Bulaj Grzegorz, Olivera Baldomero M

机构信息

Department of Biology, University of Utah, 257 S. 1400 E. Rm. 114, Salt Lake City, UT 84112, USA.

出版信息

Toxicon. 2009 Jan;53(1):90-8. doi: 10.1016/j.toxicon.2008.10.017. Epub 2008 Nov 20.

Abstract

Described herein is a general approach to identify novel compounds using the biodiversity of a megadiverse group of animals; specifically, the phylogenetic lineage of the venomous gastropods that belong to the genus Conus ("cone snails"). Cone snail biodiversity was exploited to identify three new mu-conotoxins, BuIIIA, BuIIIB and BuIIIC, encoded by the fish-hunting species Conus bullatus. BuIIIA, BuIIIB and BuIIIC are strikingly divergent in their amino acid composition compared to previous mu-conotoxins known to target the voltage-gated Na channel skeletal muscle subtype Na(v)1.4. Our preliminary results indicate that BuIIIB and BuIIIC are potent inhibitors of Na(v)1.4 (average block approximately 96%, at a 1muM concentration of peptide), displaying a very slow off-rate not seen in previously characterized mu-conotoxins that block Na(v)1.4. In addition, the three new C. bullatus mu-conopeptides help to define a new branch of the M-superfamily of conotoxins, namely M-5. The exogene strategy used to discover these Na channel-inhibiting peptides was based on both understanding the phylogeny of Conus, as well as the molecular genetics of venom mu-conotoxin peptides previously shown to generally target voltage-gated Na channels. The discovery of BuIIIA, BuIIIB and BuIIIC Na channel blockers expands the diversity of ligands useful in determining the structure-activity relationship of voltage-gated sodium channels.

摘要

本文描述了一种利用种类繁多的动物的生物多样性来鉴定新型化合物的通用方法;具体而言,是利用属于芋螺属(“芋螺”)的有毒腹足动物的系统发育谱系。利用芋螺的生物多样性鉴定出了三种新的μ-芋螺毒素,即BuIIIA、BuIIIB和BuIIIC,它们由以鱼为食的种Conus bullatus编码。与之前已知作用于电压门控钠通道骨骼肌亚型Na(v)1.4的μ-芋螺毒素相比,BuIIIA、BuIIIB和BuIIIC在氨基酸组成上有显著差异。我们的初步结果表明,BuIIIB和BuIIIC是Na(v)1.4的有效抑制剂(在1μM肽浓度下平均阻断约96%),其解离速率非常慢,这在之前已表征的阻断Na(v)1.4的μ-芋螺毒素中未见。此外,这三种新的Conus bullatusμ-芋螺肽有助于定义芋螺毒素M超家族的一个新分支,即M-5。用于发现这些钠通道抑制肽的外基因策略基于对芋螺系统发育的理解,以及之前已证明通常作用于电压门控钠通道的毒液μ-芋螺毒素的分子遗传学。BuIIIA、BuIIIB和BuIIIC钠通道阻滞剂的发现扩展了可用于确定电压门控钠通道结构-活性关系的配体的多样性。

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Conus peptides: biodiversity-based discovery and exogenomics.芋螺肽:基于生物多样性的发现与外基因组学
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