Lannoo Nausicaä, Vervecken Wouter, Proost Paul, Rougé Pierre, Van Damme Els J M
Laboratory of Biochemistry and Glycobiology, Department of Molecular Biotechnology, Ghent University, Coupure Links 653, 9000 Gent, Belgium.
Protein Expr Purif. 2007 Jun;53(2):275-82. doi: 10.1016/j.pep.2007.01.007. Epub 2007 Jan 20.
The Nicotiana tabacum lectin, also called Nictaba, is a nucleocytoplasmic plant lectin expressed in tobacco leaves after exposure to jasmonates. Purification of the lectin from raw material is a time-consuming process, demanding large amounts of induced plant material. In addition, the lectin yield is low and purified lectin fractions are always contaminated with low molecular weight compounds such as phenols. In a way to improve and facilitate the purification of the tobacco lectin, we cloned the Nictaba gene in a vector optimized for protein expression in the methylotrophic yeast Pichia pastoris. In this report, we present data of the expression profile of recombinant Nictaba in the P. pastoris culture medium and in P. pastoris cells together with the purification strategy using ion exchange chromatography and affinity chromatography on a column with immobilized ovomucoid. Pichia transformants were estimated to express approximately 6mg of recombinant lectin per liter medium after a 72h culture. SDS-PAGE and Western blot analysis revealed that the recombinant lectin expressed in Pichia exists in two molecular forms. Edman degradation and mass spectrometry analysis confirmed the presence of at least two forms of recombinant lectin with molecular weights of 19,060 and 20,100Da, corresponding to lectin polypeptides similar to the fully processed Nictaba which is N-terminally blocked, and Nictaba extended at the N-terminus with the amino acids residues EAEAYVEFT due to incomplete processing of the alpha-factor mating sequence. Further characterisation of the recombinant lectin revealed agglutination and carbohydrate-binding properties similar to the native tobacco lectin.
烟草凝集素,也称为Nictaba,是一种核质植物凝集素,在接触茉莉酸酯后在烟草叶片中表达。从原材料中纯化该凝集素是一个耗时的过程,需要大量诱导的植物材料。此外,凝集素产量低,纯化的凝集素级分总是被低分子量化合物如酚类污染。为了改进和促进烟草凝集素的纯化,我们将Nictaba基因克隆到一个针对甲基营养酵母毕赤酵母中蛋白质表达优化的载体中。在本报告中,我们展示了重组Nictaba在毕赤酵母培养基和毕赤酵母细胞中的表达谱数据,以及使用离子交换色谱和固定化卵类粘蛋白柱上的亲和色谱的纯化策略。毕赤酵母转化体在72小时培养后估计每升培养基表达约6毫克重组凝集素。SDS-PAGE和蛋白质印迹分析表明毕赤酵母中表达的重组凝集素以两种分子形式存在。埃德曼降解和质谱分析证实存在至少两种形式的重组凝集素,分子量分别为19,060和20,100Da,对应于类似于N端封闭的完全加工的Nictaba的凝集素多肽,以及由于α因子交配序列加工不完全而在N端延伸有氨基酸残基EAEAYVEFT的Nictaba。重组凝集素的进一步表征显示其凝集和碳水化合物结合特性与天然烟草凝集素相似。