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Expression of a Toll Signaling Regulator Serpin in a Mycoinsecticide for Increased Virulence

机译:收费信号调节剂丝氨酸蛋白酶抑制剂在杀真菌剂中增加毒力的表达。

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Serpins are ubiquitously distributed serine protease inhibitors that covalently bind to target proteases to exert their activities. Serpins regulate a wide range of activities, particularly those in which protease-mediated cascades are active. The Drosophila melanogaster serpin Spn43Ac negatively controls the Toll pathway that is activated in response to fungal infection. The entomopathogenic fungus Beauveria bassiana offers an environmentally friendly alternative to chemical pesticides for insect control. However, the use of mycoinsecticides remains limited in part due to issues of efficacy (low virulence) and the recalcitrance of the targets (due to strong immune responses). Since Spn43Ac acts to inhibit Toll-mediated activation of defense responses, we explored the feasibility of a new strategy to engineer entomopathogenic fungi with increased virulence by expression of Spn43Ac in the fungus. Compared to the 50% lethal dose (LD_(50)) for the wild-type parent, the LD_(50) of B. bassiana expressing Spn43Ac (strain Bb::S43Ac-1) was reduced ~3-fold, and the median lethal time against the greater wax moth ( Galleria mellonella ) was decreased by ~24%, with the more rapid proliferation of hyphal bodies being seen in the host hemolymph. In vitro and in vivo assays showed inhibition of phenoloxidase (PO) activation in the presence of Spn43Ac, with Spn43Ac-mediated suppression of activation by chymotrypsin, trypsin, laminarin, and lipopolysaccharide occurring in the following order: chymotrypsin and trypsin > laminarin > lipopolysaccharide. Expression of Spn43Ac had no effect on the activity of the endogenous B. bassiana -derived cuticle-degrading protease (CDEP-1). These results expand our understanding of Spn43Ac function and confirm that suppression of insect immune system defenses represents a feasible approach to engineering entomopathogenic fungi for greater efficacy.
机译:丝氨酸蛋白酶抑制剂是普遍分布的丝氨酸蛋白酶抑制剂,其与靶标蛋白酶共价结合以发挥其活性。丝氨酸蛋白酶抑制剂调节广泛的活性,特别是其中蛋白酶介导的级联起作用的那些。果蝇Serpin Spn43Ac果蝇消极地控制Toll通路,响应真菌感染而激活。昆虫病原性球孢白僵菌提供了一种环境友好的化学农药替代品,可用于控制昆虫。然而,由于功效(低毒力)和靶标的顽固性(由于强烈的免疫反应)的问题,霉菌杀虫剂的使用仍然受到限制。由于Spn43Ac的作用是抑制Toll介导的防御反应的激活,因此我们探索了一种通过在真菌中表达Spn43Ac来设计具有更高毒力的工程致病性真菌的新策略的可行性。与野生型亲本的50%致死剂量(LD_(50))相比,表达Spn43Ac(菌株Bb :: S43Ac-1)的球孢白僵菌的LD_(50)降低了约3倍,并且中位数对更大的蜡蛾(Galleria mellonella)的致死时间减少了约24%,并且在宿主的淋巴中看到了菌丝体的更快扩散。体外和体内试验显示,在Spn43Ac存在下,苯酚氧化酶(PO)的激活受到抑制,而SPn43Ac介导的胰凝乳蛋白酶,胰蛋白酶,层粘连蛋白和脂多糖的抑制作用按以下顺序发生:胰凝乳蛋白酶和胰蛋白酶>层粘连蛋白>脂多糖。 Spn43Ac的表达对内生球孢杆菌衍生的表皮降解蛋白酶(CDEP-1)的活性没有影响。这些结果扩展了我们对Spn43Ac功能的理解,并证实抑制昆虫免疫系统防御代表了一种工程化昆虫病原真菌以提高功效的可行方法。

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