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大猪屎豆脲酶对棉铃象鼻虫若虫的杀虫效果及消化肽酶的特性。

Insecticidal effect of Canavalia ensiformis major urease on nymphs of the milkweed bug Oncopeltus fasciatus and characterization of digestive peptidases.

机构信息

Graduate Program in Cellular and Molecular Biology, Center of Biotechnology, Universidade Federal do Rio Grande do Sul, Av. Bento Gonçalves 9500, CEP 91501-970 Porto Alegre, Rio Grande do Sul, Brazil.

出版信息

Insect Biochem Mol Biol. 2011 Jun;41(6):388-99. doi: 10.1016/j.ibmb.2011.02.008. Epub 2011 Mar 4.

Abstract

Jackbean (Canavalia ensiformis) ureases are entomotoxic upon the release of internal peptides by insect's digestive enzymes. Here we studied the digestive peptidases of Oncopeltus fasciatus (milkweed bug) and its susceptibility to jackbean urease (JBU). O. fasciatus nymphs fed urease showed a mortality rate higher than 80% after two weeks. Homogenates of midguts dissected from fourth instars were used to perform proteolytic activity assays. The homogenates hydrolyzed JBU in vitro, yielding a fragment similar in size to known entomotoxic peptides. The major proteolytic activity at pH 4.0 upon protein substrates was blocked by specific inhibitors of aspartic and cysteine peptidases, but not significantly affected by inhibitors of metallopeptidases or serine peptidases. The optimal activity upon N-Cbz-Phe-Arg-MCA was at pH 5.0, with complete blockage by E-64 in all pH tested. Optimal activity upon Abz-AIAFFSRQ-EDDnp (a substrate for aspartic peptidases) was detected at pH 5.0, with partial inhibition by Pepstatin A in the pH range 2-8. Fluorogenic substrates corresponding to the N- and C-terminal regions flanking a known entomotoxic peptide within urease sequence were also tested. While the midgut homogenate did not hydrolyze the N-terminal peptide, it cleaved the C-terminal peptide maximally at pH 4.0-5.0, and this activity was inhibited by E-64 (10 μM). The midgut homogenate was submitted to ion-exchange chromatography followed by gel filtration. A 22 kDa active fraction was obtained, resolved in SDS-PAGE (12%), the corresponding band was in-gel digested by trypsin, the peptides were analyzed by mass spectrometry, retrieving a cathepsin L protein. The purified cathepsin L was shown to have at least two possible cleavage sites within the urease sequence, and might be able to release a known insecticidal peptide in a single or cascade event. The results suggest that susceptibility of O. fasciatus nymphs to jackbean urease is, like in other insect models, due mostly to limited proteolysis of ingested protein and subsequent release of entomotoxic peptide(s) by cathepsin-like digestive enzymes.

摘要

刀豆脲酶(Canavalia ensiformis)在昆虫消化酶释放内部肽时具有昆虫毒性。在这里,我们研究了斑蝥(milkweed bug)的消化肽酶及其对刀豆脲酶(JBU)的敏感性。两周后,喂食脲酶的斑蝥若虫死亡率高于 80%。从第四龄期分离的中肠匀浆用于进行蛋白水解活性测定。匀浆在体外水解 JBU,产生大小与已知昆虫毒性肽相似的片段。在 pH4.0 时,用特定的天冬氨酸和半胱氨酸肽酶抑制剂阻断主要的蛋白水解活性,但金属肽酶或丝氨酸肽酶抑制剂对其没有显著影响。用 N-Cbz-Phe-Arg-MCA 作为蛋白底物时,最适 pH 为 5.0,在所有测试的 pH 值下,E-64 完全阻断。用 Abz-AIAFFSRQ-EDDnp(天冬氨酸肽酶的底物)作为蛋白底物时,最适 pH 为 5.0,在 pH2-8 范围内用 Pepstatin A 部分抑制。还测试了与脲酶序列中已知昆虫毒性肽的 N-和 C-末端侧翼相对应的荧光底物。虽然中肠匀浆不水解 N-末端肽,但在 pH4.0-5.0 时最大程度地切割 C-末端肽,并且该活性被 E-64(10 μM)抑制。中肠匀浆进行离子交换层析和凝胶过滤。获得了 22 kDa 的活性部分,在 SDS-PAGE(12%)中得到解析,相应的条带在凝胶中用胰蛋白酶消化,肽用质谱分析,得到半胱氨酸蛋白酶 L 蛋白。纯化的半胱氨酸蛋白酶 L 在脲酶序列内至少有两个可能的切割位点,并且可能能够在单个或级联事件中释放已知的杀虫肽。结果表明,斑蝥若虫对刀豆脲酶的敏感性,与其他昆虫模型一样,主要是由于摄入的蛋白的有限水解和随后由半胱氨酸蛋白酶样消化酶释放的昆虫毒性肽。

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