Faculty of Pharmaceutical Sciences, Doshisha Women's College, Kyotanabe 610-0395, Japan.
Biochem Biophys Res Commun. 2012 Nov 23;428(3):343-7. doi: 10.1016/j.bbrc.2012.10.054. Epub 2012 Oct 22.
Modification of lipopolysaccharides, including the membrane anchor portion lipid A, is essential for bacterial adaptation to its host. We examined whether lipid A 3'-O-deacylation by Salmonella lipid A deacylase LpxR affected the ability of lipid A to stimulate the Toll-like receptor 4 (TLR4) and MD-2 complex. Unmodified lipid A and 3'-O-deacylated lipid A were purified from Escherichia coli and E. coli expressing recombinant LpxR, respectively. Inactive lipid A species, palmitoylated lipid A and a lipid A biosynthetic precursor lacking the myristate moiety were purified from E. coli expressing recombinant Salmonella lipid A palmitoyltransferase PagP and E. coli mutant defective in lipid A biosynthesis, respectively. Mass spectrometric analysis of the purified lipid A preparations showed a spectra of single lipid A species and gave a single band on thin layer chromatography. An NF-κB-dependent reporter activation assay was used to determine the bioactivity of the lipid A species in a cell line that expressed human TLR4 and MD-2 complex. Deacylated lipid A was less active than unmodified lipid A, suggesting that lipid A 3'-O-deacylation by LpxR is beneficial for bacteria to evade host immune surveillance: On the other hand, deacylated lipid A was more active than palmitoylated lipid A and the lipid A precursor. Taken together, these results indicated that lipid A 3'-O-deacylation by LpxR significantly reduces the bioactivity of lipid A.
脂多糖的修饰,包括膜锚定部分脂质 A,对于细菌适应宿主是必不可少的。我们研究了沙门氏菌脂多糖脱酰酶 LpxR 对脂质 A 3'-O 脱酰化是否影响脂质 A 刺激 Toll 样受体 4(TLR4)和 MD-2 复合物的能力。未修饰的脂质 A 和 3'-O 脱酰化的脂质 A 分别从大肠杆菌和表达重组 LpxR 的大肠杆菌中纯化。从表达重组沙门氏菌脂多糖棕榈酰转移酶 PagP 的大肠杆菌和脂多糖生物合成缺陷的大肠杆菌突变体中分别纯化了失活的脂质 A 物种、棕榈酰化脂质 A 和缺乏肉豆蔻酸部分的脂质 A 生物合成前体。纯化的脂质 A 制剂的质谱分析显示出单一脂质 A 物种的光谱,并在薄层色谱上显示出单一带。NF-κB 依赖性报告基因激活测定用于测定在表达人 TLR4 和 MD-2 复合物的细胞系中脂质 A 物种的生物活性。脱酰化的脂质 A 比未修饰的脂质 A 活性低,表明 LpxR 的脂质 A 3'-O 脱酰化有利于细菌逃避宿主免疫监视:另一方面,脱酰化的脂质 A 比棕榈酰化的脂质 A 和脂质 A 前体更具活性。总之,这些结果表明,LpxR 对脂质 A 的 3'-O 脱酰化显著降低了脂质 A 的生物活性。