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赤拟谷盗半胱氨酸蛋白酶的前肽:一种对内源酶具有增强选择性的新型肽。

Proregion of Acanthoscelides obtectus cysteine proteinase: a novel peptide with enhanced selectivity toward endogenous enzymes.

作者信息

Silva F B, Monteiro A C S, Del Sarto R P, Marra B M, Dias S C, Figueira E L Z, Oliveira G R, Rocha T L, Souza D S L, da Silva M C M, Franco O L, Grossi-de-Sa M F

机构信息

Embrapa Recursos Genéticos e Biotecnologia, Brasília-DF 70770-900, Brazil.

出版信息

Peptides. 2007 Jun;28(6):1292-8. doi: 10.1016/j.peptides.2007.03.020. Epub 2007 Mar 31.

Abstract

Acanthoscelides obtectus is a devastating storage insect pest capable of causing severe bean crop losses. In order to maintain their own development, insect pest larvae feed continuously, synthesizing efficient digestive enzymes. Among them, cysteine proteinases (CPs) are commonly produced as inactive precursors (procysteines), requiring a cleavage of the peptide proregion to become active. The proregion fits tightly into the active site of procysteines, efficiently preventing their activity. In this report, a CP cDNA (cpao) was isolated from A. obtectus midgut larvae. In silico studies indicated that the complete CP sequence contains a hydrophobic signal peptide, a prodomain and a conserved catalytic region. Moreover, the encoding cDNA contains 963bp translating into a 321 residue protein, CPAo, which was expressed in E. coli, fused with thioredoxin. Enzymatic assays using the recombinant protein revealed that the enzyme was catalytically active, being able to cleave the synthetic substrate Z-Phe-Arg-7-AMC. Additionally, this report also focuses the cpao propeptide (PCPAo) subcloning and expression. The expressed propeptide efficiently inhibited CPAo, as well as digestive CP of other bean bruchids. Little or no activity was found against proteolytic enzymes of two other coleopterans: Rhyzopertha dominica and Anthonomus grandis. The data reported here indicate the possibility of endogenous propeptides as a novel strategy on bruchids control, which could be applicable to bean improvement programs.

摘要

菜豆象是一种极具破坏力的仓储害虫,能够给豆类作物造成严重损失。为了维持自身发育,害虫幼虫持续进食,合成高效的消化酶。其中,半胱氨酸蛋白酶(CPs)通常以前体形式(原半胱氨酸)产生,需要切割肽前区才能激活。前区紧密契合原半胱氨酸的活性位点,有效抑制其活性。在本报告中,从菜豆象中肠幼虫中分离出一个CP cDNA(cpao)。计算机模拟研究表明,完整的CP序列包含一个疏水信号肽、一个前结构域和一个保守的催化区域。此外,编码的cDNA包含963bp,翻译成一个321个残基的蛋白质CPAo,该蛋白在大肠杆菌中表达,并与硫氧还蛋白融合。使用重组蛋白进行的酶活性测定表明,该酶具有催化活性,能够切割合成底物Z-Phe-Arg-7-AMC。此外,本报告还聚焦于cpao前肽(PCPAo)的亚克隆和表达。表达的前肽有效抑制了CPAo以及其他豆类象鼻虫的消化CP。对另外两种鞘翅目昆虫:谷蠹和棉铃象甲的蛋白水解酶几乎没有活性。此处报告的数据表明,内源性前肽作为一种控制豆类象鼻虫的新策略具有可能性,这可能适用于豆类改良计划。

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