首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Structural Basis of Trypsin Inhibition and Entomotoxicity of Cospin Serine Protease Inhibitor Involved in Defense of Coprinopsis cinerea Fruiting Bodies
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Structural Basis of Trypsin Inhibition and Entomotoxicity of Cospin Serine Protease Inhibitor Involved in Defense of Coprinopsis cinerea Fruiting Bodies

机译:胰蛋白酶抑制的结构基础和Cospin丝氨酸蛋白酶抑制剂Cospin的体内毒性参与了灰霉病子实体的防御

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摘要

Cospin (PIC1) from Coprinopsis cinerea is a serine protease inhibitor with biochemical properties similar to those of the previously characterized fungal serine protease inhibitors, cnispin from Clitocybe nebularis and LeSPI from Lentinus edodes, classified in the family I66 of the MEROPS protease inhibitor classification. In particular, it exhibits a highly specific inhibitory profile as a very strong inhibitor of trypsin with Ki in the picomolar range. Determination of the crystal structure revealed that the protein has a β-trefoil fold. Site-directed mutagenesis and mass spectrometry results have confirmed Arg-27 as the reactive binding site for trypsin inhibition. The loop containing Arg-27 is positioned between the β2 and β3 strands, distinguishing cospin from other β-trefoil-fold serine protease inhibitors in which β4-β5 or β5-β6 loops are involved in protease inhibition. Biotoxicity assays of cospin on various model organisms revealed a strong and specific entomotoxic activity against Drosophila melanogaster. The inhibitory inactive R27N mutant was not entomotoxic, associating toxicity with inhibitory activity. Along with the abundance of cospin in fruiting bodies of C. cinerea and the lack of trypsin-like proteases in the C. cinerea genome, these results suggest that cospin and its homologs are effectors of a fungal defense mechanism against fungivorous insects that function by specific inhibition of serine proteases in the insect gut.
机译:来自灰尾鸡腿菇的Cospin(PIC1)是一种丝氨酸蛋白酶抑制剂,其生化特性与先前表征的真菌丝氨酸蛋白酶抑制剂(来自Clitocybe nebularis的cnispin和来自香菇的LeSPI)相似,属于MEROPS蛋白酶抑制剂分类的I66家族。特别是,它作为胰蛋白酶和皮摩尔范围内的Ki的强抑制剂,具有高度特异性的抑制特性。晶体结构的确定表明该蛋白质具有β-三叶折叠。定点诱变和质谱结果已证实Arg-27是抑制胰蛋白酶的反应性结合位点。含有Arg-27的环位于β2和β3链之间,从而将cospin与其他β-三叶折叠丝氨酸蛋白酶抑制剂区分开,其中β4-β5或β5-β6环参与蛋白酶抑制。 cospin对各种模型生物的生物毒性分析表明,它对果蝇具有很强的特异性昆虫毒性活性。抑制性的无活性R27N突变体无毒,将毒性与抑制活性相关联。这些结果表明灰质梭菌子实体中大量存在cospin,并且灰质梭菌基因组中缺乏类胰蛋白酶的蛋白酶,这些结果表明cospin及其同源物是针对真菌昆虫防御真菌的机制的效应子,该昆虫通过特定的功能起作用抑制昆虫肠道中的丝氨酸蛋白酶。

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