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The dlt Operon of Bacillus cereus Is Required for Resistance to Cationic Antimicrobial Peptides and for Virulence in Insects▿

机译:蜡状芽孢杆菌的dlt操纵子是抗阳离子抗菌肽和昆虫中毒力所必需的▿

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摘要

The dlt operon encodes proteins that alanylate teichoic acids, the major components of cell walls of gram-positive bacteria. This generates a net positive charge on bacterial cell walls, repulsing positively charged molecules and conferring resistance to animal and human cationic antimicrobial peptides (AMPs) in gram-positive pathogenic bacteria. AMPs damage the bacterial membrane and are the most effective components of the humoral immune response against bacteria. We investigated the role of the dlt operon in insect virulence by inactivating this operon in Bacillus cereus, which is both an opportunistic human pathogen and an insect pathogen. The ΔdltBc mutant displayed several morphological alterations but grew at a rate similar to that for the wild-type strain. This mutant was less resistant to protamine and several bacterial cationic AMPs, such as nisin, polymyxin B, and colistin, in vitro. It was also less resistant to molecules from the insect humoral immune system, lysozyme, and cationic AMP cecropin B from Spodoptera frugiperda. ΔdltBc was as pathogenic as the wild-type strain in oral infections of Galleria mellonella but much less virulent when injected into the hemocoels of G. mellonella and Spodoptera littoralis. We detected the dlt operon in three gram-negative genera: Erwinia (Erwinia carotovora), Bordetella (Bordetella pertussis, Bordetella parapertussis, and Bordetella bronchiseptica), and Photorhabdus (the entomopathogenic bacterium Photorhabdus luminescens TT01, the dlt operon of which did not restore cationic AMP resistance in ΔdltBc). We suggest that the dlt operon protects B. cereus against insect humoral immune mediators, including hemolymph cationic AMPs, and may be critical for the establishment of lethal septicemia in insects and in nosocomial infections in humans.
机译:dlt操纵子编码的蛋白质可以使丙二酸次氯酸(革兰氏阳性细菌细胞壁的主要成分)产生。这会在细菌细胞壁上产生净正电荷,排斥带正电的分子,并赋予革兰氏阳性病原菌对动物和人类阳离子抗菌肽(AMP)的抗性。 AMP破坏细菌膜,是针对细菌的体液免疫反应中最有效的成分。我们通过灭活蜡状芽孢杆菌中的这种操纵子来研究dlt操纵子在昆虫毒力中的作用,蜡状芽孢杆菌既是机会性人类病原体,也是昆虫病原体。 ΔdltBc突变体表现出几种形态学变化,但以与野生型菌株相似的速率生长。该突变体在体外对鱼精蛋白和几种细菌阳离子AMP(如乳链菌肽,多粘菌素B和粘菌素)的抗性较弱。它对昆虫体液免疫系统的分子,溶菌酶和节食夜蛾的阳离子AMP cecropin B的抵抗力也较低。 ΔdltBc在口腔菌落口中具有与野生型菌株相同的致病性,但是当注射入菌壁和斜纹夜蛾的血细胞中时,其毒性低得多。我们在三个革兰氏阴性菌属中检测了dlt操纵子:欧文氏菌(Erwinia carotovora),博德特氏菌(百日咳博德特氏菌,副百日咳博德特氏菌和支气管博德特氏菌),以及Photorhabdus(昆虫病原性光致病菌,发光的猫不是细菌, AMP电阻(ΔdltBc)。我们建议,dlt操纵子可以保护蜡状芽孢杆菌免受昆虫体液免疫介体(包括血淋巴阳离子AMPs)的侵害,并且对于在昆虫和人类医院感染中建立致命的败血病可能至关重要。

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