Institute of Immunology and Microbiology, 1st Faculty of Medicine, Charles University, Studničkova 7, 128 00 Prague, Czech Republic.
Faculty of Science, Jan Evangelista Purkyně University in Ústí nad Labem, České mládeže 8, 400 96 Ústí nad Labem, Czech Republic.
Int J Mol Sci. 2022 Nov 30;23(23):15045. doi: 10.3390/ijms232315045.
are of great interest in the pharmaceutical industry as they produce a plethora of secondary metabolites that act as antibacterial and antifungal agents. They may thrive on their own in the soil, or associate with other organisms, such as plants or invertebrates. Some soil-derived strains exhibit hemolytic properties when cultivated on blood agar, raising the question of whether hemolysis could be a virulence factor of the bacteria. In this work we examined hemolytic compound production in 23 β-hemolytic isolates; of these 12 were soil-derived, 10 were arthropod-associated, and 1 was plant-associated. An additional human-associated sp. TR1341 served as a control. Mass spectrometry analysis suggested synthesis of polyene molecules responsible for the hemolysis: candicidins, filipins, strevertene A, tetrafungin, and tetrin A, as well as four novel polyene compounds (denoted here as polyene A, B, C, and D) in individual liquid cultures or paired co-cultures. The non-polyene antifungal compounds actiphenol and surugamide A were also identified. The findings indicate that the ability of to produce cytolytic compounds (here manifested by hemolysis on blood agar) is an intrinsic feature of the bacteria in the soil environment and could even serve as a virulence factor when colonizing available host organisms. Additionally, a literature review of polyenes and non-polyene hemolytic metabolites produced by is presented.
它们产生大量的次生代谢产物,具有抗菌和抗真菌作用,因此在制药行业中备受关注。它们可以在土壤中自行生长,也可以与其他生物体(如植物或无脊椎动物)相关联。一些从土壤中分离出来的菌株在血琼脂上培养时表现出溶血特性,这就提出了一个问题,即溶血是否可以成为细菌的毒力因素。在这项工作中,我们研究了 23 株β溶血分离株的溶血化合物产生情况;其中 12 株来自土壤,10 株与节肢动物相关,1 株与植物相关。一个额外的与人类相关的 sp. TR1341 作为对照。质谱分析表明,这些化合物是由多烯分子合成的,这些多烯分子负责溶血:坎地西丁、菲律宾菌素、斯特雷维滕 A、四fungin 和四林 A,以及四种新型多烯化合物(在这里表示为多烯 A、B、C 和 D)在单独的液体培养物或配对的共培养物中。还鉴定了非多烯抗真菌化合物 actiphenol 和 surugamide A。研究结果表明, 产生细胞溶解化合物(这里表现为血琼脂上的溶血)的能力是土壤环境中细菌的固有特征,甚至在定植可用宿主生物体时也可以作为毒力因素。此外,还对 产生的多烯和非多烯溶血代谢物进行了文献综述。