Department of Science, Systems and Models, Roskilde University, Roskilde, Denmark.
PLoS One. 2013;8(3):e60519. doi: 10.1371/journal.pone.0060519. Epub 2013 Mar 27.
The nematode Caenorhabditis elegans has in recent years been proven to be a powerful in vivo model for testing antimicrobial compounds. We report here that the alkaloid compound Harmane (2-methyl-β-carboline) increases the lifespan of nematodes infected with a human pathogen, the Shiga toxin-producing Escherichia coli O157:H7 strain EDL933 and several other bacterial pathogens. This was shown to be unrelated to the weak antibiotic effect of Harmane. Using GFP-expressing E. coli EDL933, we showed that Harmane does not lower the colonization burden in the nematodes. We also found that the expression of the putative immune effector gene F35E12.5 was up-regulated in response to Harmane treatment. This indicates that Harmane stimulates the innate immune response of the nematode; thereby increasing its lifespan during bacterial infection. Expression of F35E12.5 is predominantly regulated through the p38 MAPK pathway; however, intriguingly the lifespan extension resulting from Harmane was higher in p38 MAPK-deficient nematodes. This indicates that Harmane has a complex effect on the innate immune system of C. elegans. Harmane could therefore be a useful tool in the further research into C. elegans immunity. Since the innate immunity of C. elegans has a high degree of evolutionary conservation, drugs such as Harmane could also be possible alternatives to classic antibiotics. The C. elegans model could prove to be useful for selection and development of such drugs.
近年来,秀丽隐杆线虫已被证明是一种强大的体内模型,可用于测试抗菌化合物。我们在这里报告,生物碱化合物哈尔曼(2-甲基-β-咔啉)可延长感染人类病原体、产志贺毒素大肠杆菌 O157:H7 菌株 EDL933 和其他几种细菌病原体的线虫的寿命。这与哈尔曼的微弱抗生素作用无关。使用表达 GFP 的大肠杆菌 EDL933,我们表明哈尔曼不会降低线虫中的定植负担。我们还发现,假定的免疫效应基因 F35E12.5 的表达在受到哈尔曼处理后上调。这表明哈尔曼刺激了线虫的先天免疫反应;从而在细菌感染期间增加了其寿命。F35E12.5 的表达主要通过 p38 MAPK 途径调节;然而,有趣的是,由于哈尔曼缺乏 p38 MAPK 的线虫的寿命延长更高。这表明哈尔曼对秀丽隐杆线虫的先天免疫系统有复杂的影响。因此,哈尔曼可能是秀丽隐杆线虫免疫研究的有用工具。由于秀丽隐杆线虫的先天免疫具有高度的进化保守性,因此像哈尔曼这样的药物也可能成为经典抗生素的替代品。秀丽隐杆线虫模型可能被证明对这类药物的选择和开发有用。