Suppr超能文献

从黄斑海葵中分离和分子克隆新型肽毒素

Isolation and molecular cloning of novel peptide toxins from the sea anemone Antheopsis maculata.

作者信息

Honma Tomohiro, Hasegawa Yuichi, Ishida Masami, Nagai Hiroshi, Nagashima Yuji, Shiomi Kazuo

机构信息

Department of Food Science and Technology, Tokyo University of Marine Science and Technology, Konan-4, Minato-ku, Tokyo 108-8477, Japan.

出版信息

Toxicon. 2005 Jan;45(1):33-41. doi: 10.1016/j.toxicon.2004.09.013.

Abstract

Three peptide toxins (Am I-III) with crab toxicity were isolated from the sea anemone Anthopleura maculata by gel filtration and reverse-phase HPLC. Am I was weakly lethal to crabs (LD50 830 microg/kg) and Am III was potently lethal (LD50 70 microg/kg), while Am II was only paralytic (ED50 420 microg/kg). The complete amino acid sequences of the three toxins were determined by cDNA cloning based on 3'-Race and 5'-Race. Although Am III (47 residues) is an analogue of the well-known type 1 sea anemone sodium channel toxins, both Am I (27 residues) and II (46 residues) are structurally novel peptide toxins. Am I is a new toxin having no sequence homologies with any toxins. Am II shares 28-39% identity with the recently characterized sea anemone toxins inhibiting specialized ion channels, BDS-I and II from Anemonia sulcata and APETx1 and 2 from Anthopleura elegantissima. The precursor proteins of the three toxins are commonly composed of a signal peptide, a propart with a pair of basic residues (Lys-Arg) at the end and the remaining portion. Very interestingly, the Am I precursor protein contains as many as six copies of Am I.

摘要

通过凝胶过滤和反相高效液相色谱法,从海葵黄斑海葵中分离出三种具有蟹毒性的肽毒素(Am I - III)。Am I对螃蟹的致死性较弱(半数致死量为830微克/千克),Am III具有很强的致死性(半数致死量为70微克/千克),而Am II仅具有麻痹作用(半数有效量为420微克/千克)。基于3'-Race和5'-Race,通过cDNA克隆确定了这三种毒素的完整氨基酸序列。尽管Am III(47个残基)是著名的1型海葵钠通道毒素的类似物,但Am I(27个残基)和Am II(46个残基)在结构上都是新型肽毒素。Am I是一种与任何毒素都没有序列同源性的新毒素。Am II与最近鉴定的抑制特殊离子通道的海葵毒素具有28 - 39%的同一性,这些毒素包括来自沟迎风海葵的BDS - I和II以及来自优美海葵的APETx1和2。这三种毒素的前体蛋白通常由一个信号肽、一个在末端带有一对碱性残基(赖氨酸 - 精氨酸)的前肽部分和其余部分组成。非常有趣的是,Am I前体蛋白中含有多达六个Am I拷贝。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验