Department of Biotechnology and Biosciences, University of Milano Bicocca, Piazza della Scienza, 2, 20126 Milano, Italy.
Int J Mol Sci. 2017 Nov 3;18(11):2318. doi: 10.3390/ijms18112318.
The interactions between sugar-containing molecules from the bacteria cell wall and pattern recognition receptors (PRR) on the plasma membrane or cytosol of specialized host cells are the first molecular events required for the activation of higher animal's immune response and inflammation. This review focuses on the role of carbohydrates of bacterial endotoxin (lipopolysaccharide, LPS, lipooligosaccharide, LOS, and lipid A), in the interaction with the host Toll-like receptor 4/myeloid differentiation factor 2 (TLR4/MD-2) complex. The lipid chains and the phosphorylated disaccharide core of lipid A moiety are responsible for the TLR4 agonist action of LPS, and the specific interaction between MD-2, TLR4, and lipid A are key to the formation of the activated complex (TLR4/MD-2/LPS)₂, which starts intracellular signalling leading to nuclear factors activation and to production of inflammatory cytokines. Subtle chemical variations in the lipid and sugar parts of lipid A cause dramatic changes in endotoxin activity and are also responsible for the switch from TLR4 agonism to antagonism. While the lipid A pharmacophore has been studied in detail and its structure-activity relationship is known, the contribution of core saccharides 3-deoxy-d-manno-octulosonic acid (Kdo) and heptosyl-2-keto-3-deoxy-octulosonate (Hep) to TLR4/MD-2 binding and activation by LPS and LOS has been investigated less extensively. This review focuses on the role of lipid A, but also of Kdo and Hep sugars in LPS/TLR4 signalling.
细菌细胞壁中含糖分子与宿主细胞的质膜或胞质中模式识别受体(PRR)之间的相互作用,是激活高等动物免疫反应和炎症的最初分子事件。本文重点关注细菌内毒素(脂多糖、LPS、脂寡糖、LOS 和脂质 A)的碳水化合物与宿主 Toll 样受体 4/髓样分化因子 2(TLR4/MD-2)复合物相互作用的作用。脂质 A 部分的脂质链和磷酸化二糖核心负责 LPS 对 TLR4 的激动作用,而 MD-2、TLR4 和脂质 A 之间的特异性相互作用是形成激活复合物(TLR4/MD-2/LPS)₂的关键,该复合物启动细胞内信号传导,导致核因子激活和炎症细胞因子的产生。脂质 A 部分的脂质和糖的细微化学变化导致内毒素活性的显著变化,也是 TLR4 激动作用向拮抗作用转变的原因。虽然脂质 A 的药效团已被详细研究,其结构-活性关系已知,但核心糖 3-脱氧-d-甘露庚酮糖酸(Kdo)和庚糖基-2-酮-3-脱氧-octulosonate(Hep)对 LPS 和 LOS 与 TLR4/MD-2 结合和激活的贡献研究得还不够广泛。本文重点关注脂质 A 的作用,但也关注 LPS/TLR4 信号转导中 Kdo 和 Hep 糖的作用。