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来自潜伏期的脂多糖脱酰基酶PagL的释放弥补了肠炎沙门氏菌中脂多糖氨基阿拉伯糖修饰依赖性抗微生物肽多粘菌素B抗性的缺乏。

Release of the lipopolysaccharide deacylase PagL from latency compensates for a lack of lipopolysaccharide aminoarabinose modification-dependent resistance to the antimicrobial peptide polymyxin B in Salmonella enterica.

作者信息

Kawasaki Kiyoshi, China Kotaro, Nishijima Masahiro

机构信息

Faculty of Pharmaceutical Sciences, Doshisha Women's College, Kodo, Kyotanabe, Kyoto 610-0395, Japan.

出版信息

J Bacteriol. 2007 Jul;189(13):4911-9. doi: 10.1128/JB.00451-07. Epub 2007 May 4.

DOI:10.1128/JB.00451-07
PMID:17483225
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1913436/
Abstract

Salmonella enterica modifies its lipopolysaccharide (LPS), including the lipid A portion, to adapt to its environments. The lipid A 3-O-deacylase PagL exhibits latency; deacylation of lipid A is not usually observed in vivo despite the expression of PagL, which is under the control of a two-component regulatory system, PhoP-PhoQ. In contrast, PagL is released from latency in pmrA and pmrE mutants, both of which are deficient in aminoarabinose-modified lipid A, although the biological significance of this is not clear. The attachment of aminoarabinose to lipid A decreases the net anionic charge at the membrane's surface and reduces electrostatic repulsion between neighboring LPS molecules, leading to increases in bacterial resistance to cationic antimicrobial peptides, including polymyxin B. Here we examined the effects of the release of PagL from latency on resistance to polymyxin B. The pmrA pagL and pmrE pagL double mutants were more susceptible to polymyxin B than were the parental pmrA and pmrE mutants, respectively. Furthermore, introduction of the PagL expression plasmid into the pmrA pagL double mutant increased the resistance to polymyxin B. In addition, PagL-dependent deacylation of lipid A was observed in a mutant in which lipid A could not be modified with phosphoethanolamine, which partly contributes to the PmrA-dependent resistance to polymyxin B. These results, taken together, suggest that the release of PagL from latency compensates for the loss of resistance to polymyxin B that is due to a lack of other modifications to LPS.

摘要

肠炎沙门氏菌会修饰其脂多糖(LPS),包括脂质A部分,以适应其生存环境。脂质A 3-O-脱酰酶PagL表现出潜伏性;尽管PagL在双组分调节系统PhoP-PhoQ的控制下表达,但在体内通常观察不到脂质A的脱酰作用。相比之下,PagL在pmrA和pmrE突变体中从潜伏状态释放出来,这两种突变体都缺乏氨基阿拉伯糖修饰的脂质A,尽管其生物学意义尚不清楚。氨基阿拉伯糖与脂质A的结合会降低膜表面的净阴离子电荷,并减少相邻LPS分子之间的静电排斥,从而导致细菌对包括多粘菌素B在内的阳离子抗菌肽的抗性增加。在这里,我们研究了PagL从潜伏状态释放对多粘菌素B抗性的影响。pmrA pagL和pmrE pagL双突变体分别比亲本pmrA和pmrE突变体对多粘菌素B更敏感。此外,将PagL表达质粒导入pmrA pagL双突变体可增加对多粘菌素B的抗性。此外,在一个脂质A不能被磷酸乙醇胺修饰的突变体中观察到了PagL依赖性的脂质A脱酰作用,这在一定程度上有助于PmrA依赖性的对多粘菌素B的抗性。综上所述,这些结果表明PagL从潜伏状态的释放补偿了由于LPS缺乏其他修饰而导致的对多粘菌素B抗性的丧失。

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