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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >pH regulates pore formation of a protease activated Vip3Aa from Bacillus thuringiensis
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pH regulates pore formation of a protease activated Vip3Aa from Bacillus thuringiensis

机译:pH调节来自芽孢杆菌的蛋白酶活性VIP3AA的孔形成

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摘要

Vip3Aa insecticidal protein is produced from Bacillus thuringiensis and exerts a broad spectrum of toxicity against lepidopteran insect species. Although Vip3Aa has been effectively used as part of integrated pest management strategies, the mechanism of the toxin remains unclear. Here, we investigated the effect of pH in a range from 5.0 to 10.0 on the pore-forming activity of the trypsin activated Vip3Aa (actVip3Aa) by in vitro pore-forming assays. Based on calcein release assay, actVip3Aa could permeabilize the artificial neutral liposomes under all the pH tested, except pH 10.0. The maximum membrane permeability of actVip3Aa was detected at pH 8.0 and the permeability decreased and abolished when exposing to acidic and alkaline conditions, respectively. The planar lipid bilayer experiment revealed that actVip3Aa formed ion channels at pH 5.0-8.0 but no current signals were detected at pH 10.0, consistent with the observation from calcein release assay. The toxin formed ion channels with a diameter of 1.4 nm at pH 8.0 and pore size was gradually decreased when reducing the pH. This study provided a view of the molecular mechanism of Vip3Aa by which the pore-forming activity is regulated by pH.
机译:VIP3AA杀虫蛋白是由芽孢杆菌产生的,并对鳞翅目昆虫物种产生广泛的毒性。虽然VIP3AA已被有效地用作综合害虫管理策略的一部分,但毒素的机制仍不清楚。在这里,通过体外孔形成测定,研究了对胰蛋白酶活化的VIP3AA(ActVIP3AA)的孔形成活性的5.0至10.0的pH值的影响。基于Calcein释放测定,ACTVIP3AA可以透露在所有pH测试中的人工中性脂质体,除pH10.0之外。在pH 8.0下检测到ACTVIP3AA的最大膜渗透性,并且在暴露于酸性和碱性条件时,渗透率降低并减少。平面脂质双层实验揭示了actvip3aa在pH5.0-8.0处形成离子通道,但在pH10.0下没有检测到电流信号,与来自Calcein释放测定的观察一致。在降低pH时,在pH 8.0下具有直径为1.4nm的毒素形成的离子通道逐渐降低。本研究提供了VIP3AA的分子机制的视图,通过pH调节孔形成活性。

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