Bednarska Natalia G, van Eldere Johan, Gallardo Rodrigo, Ganesan Ashok, Ramakers Meine, Vogel Isabel, Baatsen Pieter, Staes An, Goethals Marc, Hammarström Per, Nilsson K Peter R, Gevaert Kris, Schymkowitz Joost, Rousseau Frederic
Laboratory of Clinical Bacteriology and Mycology, Department of Microbiology and Immunology, KULeuven, Leuven, Belgium.
Switch Laboratory, VIB, Leuven, Belgium.
Mol Microbiol. 2016 Mar;99(5):849-65. doi: 10.1111/mmi.13269. Epub 2015 Dec 9.
Taking advantage of the xenobiotic nature of bacterial infections, we tested whether the cytotoxicity of protein aggregation can be targeted to bacterial pathogens without affecting their mammalian hosts. In particular, we examined if peptides encoding aggregation-prone sequence segments of bacterial proteins can display antimicrobial activity by initiating toxic protein aggregation in bacteria, but not in mammalian cells. Unbiased in vitro screening of aggregating peptide sequences from bacterial genomes lead to the identification of several peptides that are strongly bactericidal against methicillin-resistant Staphylococcus aureus. Upon parenteral administration in vivo, the peptides cured mice from bacterial sepsis without apparent toxic side effects as judged from histological and hematological evaluation. We found that the peptides enter and accumulate in the bacterial cytosol where they cause aggregation of bacterial polypeptides. Although the precise chain of events that leads to cell death remains to be elucidated, the ability to tap into aggregation-prone sequences of bacterial proteomes to elicit antimicrobial activity represents a rich and unexplored chemical space to be mined in search of novel therapeutic strategies to fight infectious diseases.
利用细菌感染的外源性本质,我们测试了蛋白质聚集的细胞毒性是否能够靶向细菌病原体而不影响其哺乳动物宿主。具体而言,我们研究了编码细菌蛋白质中易于聚集的序列片段的肽是否可以通过在细菌中引发毒性蛋白质聚集来展现抗菌活性,而在哺乳动物细胞中则不会。对来自细菌基因组的聚集肽序列进行无偏倚的体外筛选,鉴定出了几种对耐甲氧西林金黄色葡萄球菌具有强烈杀菌作用的肽。在体内进行肠胃外给药后,根据组织学和血液学评估判断,这些肽治愈了患有细菌性败血症的小鼠,且无明显的毒副作用。我们发现这些肽进入细菌细胞质并在其中积累,在那里它们会导致细菌多肽聚集。尽管导致细胞死亡的确切事件链仍有待阐明,但利用细菌蛋白质组中易于聚集的序列来引发抗菌活性的能力代表了一个丰富且未被探索的化学空间,有待挖掘以寻找对抗传染病的新型治疗策略。