Mulinari Fernanda, Becker-Ritt Arlete Beatriz, Demartini Diogo Ribeiro, Ligabue-Braun Rodrigo, Stanisçuaski Fernanda, Verli Hugo, Fragoso Rodrigo R, Schroeder Evelyn Koeche, Carlini Célia Regina, Grossi-de-Sá Maria Fátima
Center of Biotechnology, Universidade Federal do Rio Grande do Sul, Porto Alegre, RS, Brazil.
Biochim Biophys Acta. 2011 Dec;1814(12):1758-68. doi: 10.1016/j.bbapap.2011.07.022. Epub 2011 Jul 28.
Ureases, nickel-dependent enzymes that catalyze the hydrolysis of urea into ammonia and bicarbonate, are widespread in plants, bacteria, and fungi. Previously, we cloned a cDNA encoding a Canavalia ensiformis urease isoform named JBURE-II, corresponding to a putative smaller urease protein (78kDa) when compared to other plant ureases. Aiming to produce the recombinant protein, we obtained jbure-IIb, with different 3' and 5' ends, encoding a 90kDa urease. Three peptides unique to the JBURE-II/-IIb protein were detected by mass spectrometry in seed extracts, indicating that jbure-II/-IIb is a functional gene. Comparative modeling indicates that JBURE-IIb urease has an overall shape almost identical to C. ensiformis major urease JBURE-I with all residues critical for urease activity. The cDNA was cloned into the pET101 vector and the recombinant protein was produced in Escherichia coli. The JBURE-IIb protein, although enzymatically inactive presumably due to the absence of Ni atoms in its active site, impaired the growth of a phytopathogenic fungus and showed entomotoxic properties, inhibiting diuresis of Rhodnius prolixus isolated Malpighian tubules, in concentrations similar to those reported for JBURE-I and canatoxin. The antifungal and entomotoxic properties of the recombinant JBURE-IIb apourease are consistent with a protective role of ureases in plants.
脲酶是一种依赖镍的酶,可催化尿素水解为氨和碳酸氢盐,广泛存在于植物、细菌和真菌中。此前,我们克隆了一个编码刀豆脲酶同工型JBURE-II的cDNA,与其他植物脲酶相比,它对应一种假定的较小脲酶蛋白(78kDa)。为了生产重组蛋白,我们获得了jbure-IIb,其3'和5'端不同,编码一种90kDa的脲酶。通过质谱在种子提取物中检测到了JBURE-II/-IIb蛋白特有的三种肽,表明jbure-II/-IIb是一个功能基因。比较建模表明,JBURE-IIb脲酶的整体形状与刀豆主要脲酶JBURE-I几乎相同,且具有所有对脲酶活性至关重要的残基。将该cDNA克隆到pET101载体中,并在大肠杆菌中生产重组蛋白。JBURE-IIb蛋白虽然可能由于其活性位点中没有镍原子而无酶活性,但它会损害一种植物致病真菌的生长,并表现出昆虫毒性,抑制南美锥蝽分离的马氏管的利尿作用,其浓度与报道的JBURE-I和刀豆毒素相似。重组JBURE-IIb脱辅基脲酶的抗真菌和昆虫毒性特性与脲酶在植物中的保护作用一致。