Centre of Microbial and Plant Genetics, KU Leuven, Kasteelpark Arenberg 20, 3001 Heverlee, Belgium.
Toxicology and Pharmacology, University of Leuven, O&N 2, Herestraat 49, P.O. Box 922, 3000, Leuven, Belgium.
Sci Rep. 2016 Aug 30;6:32121. doi: 10.1038/srep32121.
Scorpion toxins that block potassium channels and antimicrobial plant defensins share a common structural CSαβ-motif. These toxins contain a toxin signature (K-C4-X-N) in their amino acid sequence, and based on in silico analysis of 18 plant defensin sequences, we noted the presence of a toxin signature (K-C5-R-G) in the amino acid sequence of the Arabidopsis thaliana defensin AtPDF2.3. We found that recombinant (r)AtPDF2.3 blocks Kv1.2 and Kv1.6 potassium channels, akin to the interaction between scorpion toxins and potassium channels. Moreover, rAtPDF2.3[G36N], a variant with a KCXN toxin signature (K-C5-R-N), is more potent in blocking Kv1.2 and Kv1.6 channels than rAtPDF2.3, whereas rAtPDF2.3[K33A], devoid of the toxin signature, is characterized by reduced Kv channel blocking activity. These findings highlight the importance of the KCXN scorpion toxin signature in the plant defensin sequence for blocking potassium channels. In addition, we found that rAtPDF2.3 inhibits the growth of Saccharomyces cerevisiae and that pathways regulating potassium transport and/or homeostasis confer tolerance of this yeast to rAtPDF2.3, indicating a role for potassium homeostasis in the fungal defence response towards rAtPDF2.3. Nevertheless, no differences in antifungal potency were observed between the rAtPDF2.3 variants, suggesting that antifungal activity and Kv channel inhibitory function are not linked.
能够阻断钾通道的蝎毒素和抗菌植物防御素具有共同的 CSαβ 结构基序。这些毒素在其氨基酸序列中含有毒素特征(K-C4-X-N),并且基于对 18 种植物防御素序列的计算机分析,我们注意到拟南芥防御素 AtPDF2.3 的氨基酸序列中存在毒素特征(K-C5-R-G)。我们发现重组(r)AtPDF2.3 可阻断 Kv1.2 和 Kv1.6 钾通道,类似于蝎毒素与钾通道之间的相互作用。此外,具有 KCXN 毒素特征(K-C5-R-N)的变体 rAtPDF2.3[G36N] 在阻断 Kv1.2 和 Kv1.6 通道方面比 rAtPDF2.3 更有效,而缺乏毒素特征的 rAtPDF2.3[K33A] 的 Kv 通道阻断活性降低。这些发现强调了 KCXN 蝎毒素特征在植物防御素序列中阻断钾通道的重要性。此外,我们发现 rAtPDF2.3 抑制酿酒酵母的生长,并且调节钾转运和/或稳态的途径赋予该酵母对 rAtPDF2.3 的耐受性,表明钾稳态在真菌防御反应中对 rAtPDF2.3 的作用。然而,rAtPDF2.3 变体之间没有观察到抗真菌效力的差异,表明抗真菌活性和 Kv 通道抑制功能没有关联。