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Snake Cathelicidin NA-CATH and Smaller Helical Antimicrobial Peptides Are Effective against Burkholderia thailandensis

机译:蛇Cat​​helicidin NA-CATH和较小的螺旋抗菌肽可有效对抗Burkholderia thailandensis

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摘要

Burkholderia thailandensis is a Gram-negative soil bacterium used as a model organism for B. pseudomallei, the causative agent of melioidosis and an organism classified category B priority pathogen and a Tier 1 select agent for its potential use as a biological weapon. Burkholderia species are reportedly “highly resistant” to antimicrobial agents, including cyclic peptide antibiotics, due to multiple resistance systems, a hypothesis we decided to test using antimicrobial (host defense) peptides. In this study, a number of cationic antimicrobial peptides (CAMPs) were tested in vitro against B. thailandensis for both antimicrobial activity and inhibition of biofilm formation. Here, we report that the Chinese cobra (Naja atra) cathelicidin NA-CATH was significantly antimicrobial against B. thailandensis. Additional cathelicidins, including the human cathelicidin LL-37, a sheep cathelicidin SMAP-29, and some smaller ATRA peptide derivatives of NA-CATH were also effective. The D-enantiomer of one small peptide (ATRA-1A) was found to be antimicrobial as well, with EC50 in the range of the L-enantiomer. Our results also demonstrate that human alpha-defensins (HNP-1 & -2) and a short beta-defensin-derived peptide (Peptide 4 of hBD-3) were not bactericidal against B. thailandensis. We also found that the cathelicidin peptides, including LL-37, NA-CATH, and SMAP-29, possessed significant ability to prevent biofilm formation of B. thailandensis. Additionally, we show that LL-37 and its D-enantiomer D-LL-37 can disperse pre-formed biofilms. These results demonstrate that although B. thailandensis is highly resistant to many antibiotics, cyclic peptide antibiotics such as polymyxin B, and defensing peptides, some antimicrobial peptides including the elapid snake cathelicidin NA-CATH exert significant antimicrobial and antibiofilm activity towards B. thailandensis.
机译:Burkholderia thailandensis是革兰氏阴性土壤细菌,被用作拟假芽胞杆菌的模型生物,类li病的病原体和分类为B类优先病原体的生物,以及可能用作生物武器的1级选择剂。据报道,伯克霍尔德菌种对抗生素(包括环肽抗生素)具有“高度耐药性”,这是由于多重耐药系统所致,我们决定使用抗菌(宿主防御)肽进行测试。在这项研究中,体外测试了许多针对泰国芽孢杆菌的阳离子抗菌肽(CAMP)的抗菌活性和对生物膜形成的抑制作用。在这里,我们报告说,中国眼镜蛇(Naja atra)cathelicidin NA-CATH对B. thailandensis具有明显的抗菌作用。其他的cathelicidin,包括人cathelicidin LL-37,绵羊cathelicidin SMAP-29,以及一些较小的NA-CATH的ATRA肽衍生物,也是有效的。发现一种小肽的D对映体(ATRA-1A)也具有抗菌性,EC50在L对映体范围内。我们的结果还证明,人α-防御素(HNP-1和-2)和短的β-防御素衍生肽(hBD-3的4号肽)对泰国芽孢杆菌没有杀菌作用。我们还发现,cathelicidin肽,包括LL-37,NA-CATH和SMAP-29,具有显着的防止泰国芽孢杆菌生物膜形成的能力。此外,我们表明LL-37及其D-对映体D-LL-37可以分散预先形成的生物膜。这些结果表明,尽管泰国芽孢杆菌对许多抗生素,环肽抗生素(例如多粘菌素B)和防御肽具有高度抗性,但某些抗菌肽(包括弹性蛇毒中的NA-CATH)对 B < / em>。 thailandensis

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