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通过序列分析和定点诱变绘制蛇毒磷脂酶A2生物活性的结构决定因素

Mapping structural determinants of biological activities in snake venom phospholipases A2 by sequence analysis and site directed mutagenesis.

作者信息

Chioato Lucimara, Ward Richard J

机构信息

Department of Biochemistry and Immunology, FMRP-USP, Universidade de São Paulo, Brazil.

出版信息

Toxicon. 2003 Dec 15;42(8):869-83. doi: 10.1016/j.toxicon.2003.11.027.

Abstract

In addition to their catalytic activity, snake venom phospholipases A2 (vPLA2) present remarkable diversity in their biological effects. Sequence alignment analyses of functionally related PLA2 are frequently used to predict the structural determinants of these effects, and the predictions are subsequently evaluated by site directed mutagenesis experiments and functional assays. In order to improve the predictive potential of computer-based analysis, a simple method for scanning amino acid variation analysis (SAVANA) has been developed and included in the analysis of the lysine 49 PLA2 myotoxins (Lys49-PLA2). The SAVANA analysis identified positions in the C-terminal loop region of the protein, which were not identified using previously available sequence analysis tools. Site directed mutagenesis experiments of bothropstoxin-I, a Lys49-PLA2 isolated from the venom of Bothrops jararacussu, reveals that these residues are exactly those involved in the determination of myotoxic and membrane damaging activities. The SAVANA method has been used to analyse presynaptic neurotoxic and anti-coagulant vPLA2s, and the predicted structural determinants of these activities are in excellent agreement with the available results of site directed mutagenesis experiments. The positions of residues involved in the myotoxic and neurotoxic determinants demonstrate significant overlap, suggesting that the multiple biological effects observed in many snake vPLA2s are a consequence of superposed structural determinants on the protein surface.

摘要

除了具有催化活性外,蛇毒磷脂酶A2(vPLA2)在其生物学效应方面呈现出显著的多样性。功能相关的PLA2的序列比对分析经常用于预测这些效应的结构决定因素,随后通过定点诱变实验和功能测定对这些预测进行评估。为了提高基于计算机分析的预测潜力,已经开发了一种简单的扫描氨基酸变异分析方法(SAVANA),并将其纳入赖氨酸49 PLA2肌毒素(Lys49-PLA2)的分析中。SAVANA分析确定了该蛋白质C末端环区域中的位置,这些位置是使用先前可用的序列分析工具无法确定的。对从巴西矛头蝮蛇毒液中分离出的Lys49-PLA2——巴西矛头蝮毒素-I进行的定点诱变实验表明,这些残基正是那些参与确定肌毒性和膜损伤活性的残基。SAVANA方法已用于分析突触前神经毒性和抗凝血vPLA2,这些活性的预测结构决定因素与定点诱变实验的现有结果高度一致。参与肌毒性和神经毒性决定因素的残基位置显示出显著的重叠,这表明在许多蛇vPLA2中观察到的多种生物学效应是蛋白质表面叠加的结构决定因素的结果。

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