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Inhibitory Properties of Cysteine Protease Pro-Peptides from Barley Confer Resistance to Spider Mite Feeding

机译:大麦半胱氨酸蛋白酶原肽的抑制特性赋予对蜘蛛螨取食的抗性

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摘要

C1A plant cysteine proteases are synthesized as pre-pro-enzymes that need to be processed to become active by the pro-peptide claves off from its cognate enzyme. These pro-sequences play multifunctional roles including the capacity to specifically inhibit their own as well as other C1A protease activities from diverse origin. In this study, it is analysed the potential role of C1A pro-regions from barley as regulators of cysteine proteases in target phytophagous arthropods (coleopteran and acari). The in vitro inhibitory action of these pro-sequences, purified as recombinant proteins, is demonstrated. Moreover, transgenic Arabidopsis plants expressing different fragments of HvPap-1 barley gene containing the pro-peptide sequence were generated and the acaricide function was confirmed by bioassays conducted with the two-spotted spider mite Tetranychus urticae. Feeding trials resulted in a significant reduction of leaf damage in the transgenic lines expressing the pro-peptide in comparison to non-transformed control and strongly correlated with an increase in mite mortality. Additionally, the analysis of the expression levels of a selection of potential mite targets (proteases and protease inhibitors) revealed a mite strategy to counteract the inhibitory activity produced by the C1A barley pro-prodomain. These findings demonstrate that pro-peptides can control mite pests and could be applied as defence proteins in biotechnological systems.
机译:C1A植物半胱氨酸蛋白酶是作为前原酶合成的,需要对其进行加工才能使其前肽从其同源酶中分离出来。这些前序列起多功能作用,包括特异性抑制其自身以及来自不同来源的其他C1A蛋白酶活性的能力。在这项研究中,它分析了大麦中C1A前区作为目标植物吞噬节肢动物(鞘翅目和鞘翅目)中半胱氨酸蛋白酶的调节剂的潜在作用。证明了这些纯化为重组蛋白的前序列的体外抑制作用。此外,产生了表达含有前肽序列的HvPap-1大麦基因的不同片段的转基因拟南芥植物,并且通过对两斑叶螨Tetranychus urticae进行的生物测定证实了杀螨剂的功能。与未转化的对照相比,进食试验导致表达前肽的转基因品系中的叶损伤显着减少,并且与螨虫死亡率的增加密切相关。此外,对某些潜在螨虫靶标(蛋白酶和蛋白酶抑制剂)表达水平的分析表明,螨虫策略可抵消C1A大麦前原域产生的抑制活性。这些发现表明前肽可以控制螨虫,并且可以用作生物技术系统中的防御蛋白。

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