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从尖吻蝮蛇蛇毒中分离得到的一种碱性 sPLA(D49)——AplTX-II 的结构、酶学和药理学特性。

Structural, enzymatic and pharmacological profiles of AplTX-II - A basic sPLA (D49) isolated from the Agkistrodon piscivorus leucostoma snake venom.

机构信息

Department of Biochemistry and Tissue Biology, Institute of Biology, Campinas State University (UNICAMP), Campinas, SP, Brazil.

IKIAM - Universidad Regional Amazonica, Km 7 Via Muyuna, Tena, Napo, Ecuador.

出版信息

Int J Biol Macromol. 2021 Apr 1;175:572-585. doi: 10.1016/j.ijbiomac.2021.01.187. Epub 2021 Jan 30.

Abstract

A basic sPLA (D49) from the venom of snake Agkistrodon piscivorus leucostoma (AplTX-II) was isolated, purified and characterized. We determined the enzymatic and pharmacological profiles of this toxin. AplTX-II was isolated with a high level of purity through reverse phase chromatography and molecular exclusion. The enzyme showed pI 9.48 and molecular weight of 14,003 Da. The enzymatic activity of the AplTX-II depended on Ca pH and temperature. The comparison of the primary structure with other sPLAs revealed that AplTX-II presented all the structural reasons expected for a basic sPLAs. Additionally, we have resolved its structure with the docked synthetic substrate NOBA (4-nitro-3-octanoyloxy benzoic acid) by homology modeling, and performed MD simulations with explicit solvent. Structural similarities were found between the enzyme's modeled structure and other snake sPLA X-Ray structures, available in the PDB database. NOBA and active-site water molecules spontaneously adopted stable positions and established interactions in full agreement with the reaction mechanism, proposed for the physiological substrate, suggesting that NOBA hydrolysis is an excellent model to study phospholipid hydrolysis.

摘要

从蛇 Agkistrodon piscivorus leucostoma(AplTX-II)的毒液中分离、纯化并表征了一种基本的 sPLA(D49)。我们确定了这种毒素的酶学和药理学特性。通过反相色谱和分子排阻,AplTX-II 以高纯度水平分离。该酶的等电点为 9.48,分子量为 14003 Da。AplTX-II 的酶活性依赖于 Ca pH 和温度。与其他 sPLAs 的一级结构比较表明,AplTX-II 呈现出所有预期的碱性 sPLAs 的结构原因。此外,我们通过同源建模解析了与对接合成底物 NOBA(4-硝基-3-辛酰氧基苯甲酸)的结构,并使用显式溶剂进行了 MD 模拟。在 PDB 数据库中,可获得的酶的模型结构与其他蛇 sPLA X 射线结构之间存在结构相似性。NOBA 和活性位点水分子自发地采用稳定的位置,并与生理底物的反应机制完全一致地建立相互作用,这表明 NOBA 水解是研究磷脂水解的极好模型。

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