首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Effects of efrapeptin and destruxin, metabolites of entomogenous fungi, on the hydrolytic activity of a vacuolar type ATPase identified on the brush border membrane vesicles of Galleria mellonella midgut and on plant membrane bound hydrolytic enzymes
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Effects of efrapeptin and destruxin, metabolites of entomogenous fungi, on the hydrolytic activity of a vacuolar type ATPase identified on the brush border membrane vesicles of Galleria mellonella midgut and on plant membrane bound hydrolytic enzymes

机译:头孢菌素和解构蛋白,昆虫致病真菌的代谢产物对在中肠Galleria刷状缘膜囊泡和植物膜结合水解酶上鉴定的液泡型ATPase水解活性的影响

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摘要

The brush border membrane of the insect midgut is an initial site for interaction of insecticidal proteins. We have investigated the possibility that it may contain a target site for two insecticidal fungal toxins, destruxin and efrapeptin, both of which are ATPase inhibitors. We have studied the effects of the toxins on the hydrolytic activity of a vacuolar type ATPase (V-ATPase) that we have identified from Galleria mellonella midgut columnar cell brush border membrane vesicles (BBMV) by its cation and pH dependence, sensitivity to proton pump inhibitors and K_m (0.49 mM ATP). Efrapeptin strongly inhibited the BBMV V-ATPase but destruxin had little effect. We compared the effects of the inhibitors on known plant membrane hydrolytic enzymes, and although the vacuolar pyrophosphatase and plasma membrane ATPase were not inhibited by the toxins, the V-ATPase from mung bean, but not barley, was inhibited (50%) by 10 μM concentrations of both compounds. Different forms of the toxins were tested on the ATPase and destruxin B and efrapeptin F were the most effective. Kinetic analysis showed that the purified forms of both compounds inhibited the V-ATPases uncompetitively and modelling of data for inhibition of the BBMV V-ATPase by efrapeptin at concentrations of 0.06-12 μM yielded a K_i of 0.125 μM.
机译:昆虫中肠的刷状缘膜是杀虫蛋白相互作用的初始位置。我们已经研究了它可能包含两种杀虫真菌毒素,destruxin和efrapeptin,它们都是ATPase抑制剂的靶位的可能性。我们研究了毒素对液泡型ATPase(V-ATPase)水解活性的影响,该液化酶通过阳离子和pH依赖性,对质子泵的敏感性从中毒圆顶中肠柱状细胞刷状缘膜囊泡(BBMV)中鉴定抑制剂和K_m(0.49 mM ATP)。 Efrapeptin强烈抑制BBMV V-ATPase,但destruxin的作用很小。我们比较了抑制剂对已知植物膜水解酶的影响,尽管液泡焦磷酸酶和质膜ATPase不受毒素的抑制,但是绿豆(而不是大麦)的V-ATPase被抑制了10%(50%)。两种化合物的浓度均为μM。在ATPase上测试了不同形式的毒素,destruxin B和efrapeptin F最有效。动力学分析表明,两种化合物的纯化形式均无竞争性地抑制了V-ATPase,而依帕肽原在0.06-12μM的浓度下对BBMV V-ATPase的抑制作用数据模型产生的K_i为0.125μM。

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