Neyman Virgile, Francis Frédéric, Matagne André, Dieu Marc, Michaux Catherine, Perpète Eric A
Laboratoire de Chimie Physique Des Biomolécules, UCPTS, University of Namur, 61 rue de Bruxelles, 5000, Namur, Belgium.
Functional and Evolutionary Entomology, TERRA, Gembloux Agro-Bio Tech, University of Liège, 5030, Gembloux, Belgium.
Protein J. 2022 Feb;41(1):189-200. doi: 10.1007/s10930-021-10032-7. Epub 2021 Nov 29.
Insect trehalases are glycoside hydrolases essential for trehalose metabolism and stress resistance. We here report the extraction and purification of Acyrthosiphon pisum soluble trehalase (ApTreh-1), its biochemical and structural characterization, as well as the determination of its kinetic properties. The protein has been purified by ammonium sulphate precipitation, first followed by an anion-exchange and then by an affinity chromatography. The SDS-PAGE shows a main band at 70 kDa containing two isoforms of ApTreh-1 (X1 and X2), identified by mass spectrometry and slightly contrasting in the C-terminal region. A phylogenetic tree, a multiple sequence alignment, as well as a modelled 3D-structure were constructed and they all reveal the ApTreh-1 similarity to other insect trehalases, i.e. the two signature motifs PGGRFRELYYWDTY and QWDFPNAWPP, a glycine-rich region GGGGEY, and the catalytic residues Asp336 and Glu538. The optimum enzyme activity occurs at 45 °C and pH 5.0, with K and V values of ~ 71 mM and ~ 126 µmol/min/mg, respectively. The present structural and functional characterization of soluble A. pisum trehalase enters the development of new strategies to control the aphids pest without significant risk for non-target organisms and human health.
昆虫海藻糖酶是海藻糖代谢和抗逆性所必需的糖苷水解酶。我们在此报告豌豆蚜可溶性海藻糖酶(ApTreh-1)的提取和纯化、其生化和结构特征以及动力学性质的测定。该蛋白已通过硫酸铵沉淀法纯化,首先进行阴离子交换,然后进行亲和层析。SDS-PAGE显示在70 kDa处有一条主带,包含ApTreh-1的两种同工型(X1和X2),通过质谱鉴定,在C端区域略有差异。构建了系统发育树、多序列比对以及三维结构模型,它们都揭示了ApTreh-1与其他昆虫海藻糖酶的相似性,即两个特征基序PGGRFRELYYWDTY和QWDFPNAWPP、一个富含甘氨酸的区域GGGGEY以及催化残基Asp336和Glu538。最佳酶活性出现在45°C和pH 5.0时,K和V值分别约为71 mM和126 μmol/min/mg。目前对豌豆蚜可溶性海藻糖酶的结构和功能表征有助于开发新的策略来控制蚜虫害虫,同时对非靶标生物和人类健康没有重大风险。