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首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Molecular and functional characterization of metalloserrulases, new metalloproteases from the Tityus serrulatus venom gland
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Molecular and functional characterization of metalloserrulases, new metalloproteases from the Tityus serrulatus venom gland

机译:蛇毒的金属和金属蛋白酶的分子和功能表征,蛇毒的新金属蛋白酶

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摘要

Tityus serrulatus is a Brazilian scorpion species with great medical significance. While the effects of neurotoxins have been extensively studied, little is known about the proteases expressed in the venom gland of this arthropod. In this study, clones from a T. serrulatus (Ts) venom gland cDNA library were selected according to homology to proteases. The sequences were aligned in the database and classified by homology. Similarity and identity analyses of the sequences were carried out, and a phylogenetic tree was constructed with the sequences of other proteases. These cDNA sequences correspond to ten different metalloproteases, named metalloserrulases (TsMS). TsMS 1-9 belong to the metzincin family, which has three domains: signal peptide, propeptide, and metalloprotease domain; while TsMS 10 belongs to the gluzincin family. The proteolytic activity of the venom was inferred from the cleavage of fibrinogen, and the residues recognized by the proteases were determined by cleavage of a tripeptide library using a fluorescence resonance energy transfer assay. The Ts venom showed proteolytic activity on fibrinogen and preferential cleavage close to the basic residues K and R. Its activity could be inhibited by EDTA, indicating that the venom from this scorpion predominantly consists of metalloproteases. (C) 2014 Elsevier Ltd. All rights reserved.
机译:Tityus serrulatus是巴西蝎子,具有重要的医学意义。尽管已经广泛研究了神经毒素的作用,但对这种节肢动物的毒腺中表达的蛋白酶知之甚少。在这项研究中,根据与蛋白酶的同源性,从拟南芥(Ts)蛇毒腺cDNA文库中选择了克隆。将序列在数据库中比对并通过同源性分类。对该序列进行了相似性和同一性分析,并用其他蛋白酶的序列构建了系统进化树。这些cDNA序列对应于十种不同的金属蛋白酶,称为金属芥子聚糖(TsMS)。 TsMS 1-9属于metzincin家族,具有三个域:信号肽,前肽和金属蛋白酶域;而TsMS 10属于gluzincin家族。从纤维蛋白原的切割中推断出毒液的蛋白水解活性,并且通过使用荧光共振能量转移测定法切割三肽文库来确定被蛋白酶识别的残基。 Ts毒液对纤维蛋白原表现出蛋白水解活性,并优先切割至基本残基K和R。它的活性可被EDTA抑制,表明该蝎毒液主要由金属蛋白酶组成。 (C)2014 Elsevier Ltd.保留所有权利。

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