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A complete lipopolysaccharide inner core oligosaccharide is required for resistance of Burkholderia cenocepacia to antimicrobial peptides and bacterial survival in vivo

机译:完整的脂多糖内芯寡糖是伯克霍尔德菌对细菌抗菌肽的耐药性和体内细菌存活所必需的

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摘要

Burkholderia cenocepacia is an important opportunistic pathogen of patients with cystic fibrosis. This bacterium is inherently resistant to a wide range of antimicrobial agents, including high concentrations of antimicrobial peptides. We hypothesized that the lipopolysaccharide (LPS) of B. cenocepacia is important for both virulence and resistance to antimicrobial peptides. We identified hldA and hldD genes in B. cenocepacia strain K56-2. These two genes encode enzymes involved in the modification of heptose sugars prior to their incorporation into the LPS core oligosaccharide. We constructed a mutant, SAL1, which was defective in expression of both hldA and hldD, and by performing complementation studies we confirmed that the functions encoded by both of these B. cenocepacia genes were needed for synthesis of a complete LPS core oligosaccharide. The LPS produced by SAL1 consisted of a short lipid A-core oligosaccharide and was devoid of O antigen. SAL1 was sensitive to the antimicrobial peptides polymyxin B, melittin, and human neutrophil peptide 1. In contrast, another B. cenocepacia mutant strain that produced complete lipid A-core oligosaccharide but lacked polymeric O antigen was not sensitive to polymyxin B or melittin. As determined by the rat agar bead model of lung infection, the SAL1 mutant had a survival defect in vivo since it could not be recovered from the lungs of infected rats 14 days postinfection. Together, these data show that the B. cenocepacia LPS inner core oligosaccharide is needed for in vitro resistance to three structurally unrelated antimicrobial peptides and for in vivo survival in a rat model of chronic lung infection.
机译:Burkholderia cenocepacia是囊性纤维化患者的重要机会病原体。该细菌固有地对多种抗菌剂具有抗性,包括高浓度的抗菌肽。我们假设,新洋葱肠球菌的脂多糖(LPS)对于毒力和对抗菌肽的耐药性都很重要。我们鉴定了新洋葱伯克霍尔德菌菌株K56-2中的hldA和hldD基因。这两个基因编码在掺入LPS核心寡糖之前涉及庚糖修饰的酶。我们构建了一个突变体SAL1,该突变体在hldA和hldD的表达上均存在缺陷,并且通过进行互补研究,我们证实了由这两个cenocepacia基因编码的功能是合成完整LPS核心寡糖所必需的。 SAL1产生的LPS由短脂质A核寡糖组成,不含O抗原。 SAL1对抗菌肽多粘菌素B,蜂毒肽和人嗜中性粒细胞肽1敏感。相比之下,另一种B. cenocepacia突变株可产生完整的脂质A核心寡糖,但缺乏聚合O抗原,对多粘菌素B或蜂毒肽不敏感。通过肺部感染的大鼠琼脂珠模型确定,SAL1突变体在体内具有生存缺陷,因为在感染后14天无法从被感染大鼠的肺中回收。总之,这些数据表明,在对慢性肺部感染的大鼠模型中,对三种结构无关的抗菌肽的体外抗药性和在体内存活,需要使用新细菌双歧杆菌LPS内核寡糖。

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