De Samblanx G W, Goderis I J, Thevissen K, Raemaekers R, Fant F, Borremans F, Acland D P, Osborn R W, Patel S, Broekaert W F
F. A. Janssens Laboratory of Genetics, Katholieke Universiteit Leuven, Heverlee, Belgium.
J Biol Chem. 1997 Jan 10;272(2):1171-9. doi: 10.1074/jbc.272.2.1171.
Mutational analysis of Rs-AFP2, a radish antifungal peptide belonging to a family of peptides referred to as plant defensins, was performed using polymerase chain reaction-based site-directed mutagenesis and yeast as a system for heterologous expression. The strategy followed to select candidate amino acid residues for substitution was based on sequence comparison of Rs-AFP2 with other plant defensins exhibiting differential antifungal properties. Several mutations giving rise to peptide variants with reduced antifungal activity against Fusarium culmorum were identified. In parallel, an attempt was made to construct variants with enhanced antifungal activity by substituting single amino acids by arginine. Two arginine substitution variants were found to be more active than wild-type Rs-AFP2 in media with high ionic strength. Our data suggest that Rs-AFP2 possesses two adjacent sites that appear to be important for antifungal activity, namely the region around the type VI beta-turn connecting beta-strands 2 and 3, on the one hand, and the region formed by residues on the loop connecting beta-strand 1 and the alpha-helix and contiguous residues on the alpha-helix and beta-strand 3, on the other hand. When added to F. culmorum in a high ionic strength medium, Rs-AFP2 stimulated Ca2+ uptake by up to 20-fold. An arginine substitution variant with enhanced antifungal activity caused increased Ca2+ uptake by up to 50-fold, whereas a variant that was virtually devoid of antifungal activity did not stimulate Ca2+ uptake.
对萝卜抗真菌肽Rs-AFP2进行了突变分析,Rs-AFP2属于一类被称为植物防御素的肽家族,采用基于聚合酶链反应的定点诱变技术,并以酵母作为异源表达系统。选择用于取代的候选氨基酸残基所遵循的策略是基于Rs-AFP2与其他具有不同抗真菌特性的植物防御素的序列比较。鉴定出了几个导致对禾谷镰刀菌抗真菌活性降低的肽变体。同时,尝试通过用精氨酸取代单个氨基酸来构建具有增强抗真菌活性的变体。发现两个精氨酸取代变体在高离子强度培养基中比野生型Rs-AFP2更具活性。我们的数据表明,Rs-AFP2具有两个相邻位点,这两个位点似乎对抗真菌活性很重要,一方面是连接β链2和3的VI型β转角周围的区域,另一方面是由连接β链1和α螺旋的环上的残基以及α螺旋和β链3上的相邻残基形成的区域。当在高离子强度培养基中添加到禾谷镰刀菌中时,Rs-AFP2可将Ca2+摄取刺激高达20倍。具有增强抗真菌活性的精氨酸取代变体可使Ca2+摄取增加高达50倍,而几乎没有抗真菌活性的变体则不会刺激Ca2+摄取。