Department of Biochemistry II, Nagoya University Graduate School of Medicine, Nagoya 466-0065, Japan.
Proc Natl Acad Sci U S A. 2013 Mar 19;110(12):4714-9. doi: 10.1073/pnas.1218508110. Epub 2013 Mar 5.
Although endogenous ligands for Toll-like receptor (TLR)4-myeloid differentiation factor 2 (MD2) have not been well-understood, we here report that a globo-series glycosphingolipid, globotetraosylceramide (Gb4), attenuates the toxicity of lipopolysaccharides (LPSs) by binding to TLR4-MD-2. Because α1,4-galactosyltransferase (A4galt)-deficient mice lacking globo-series glycosphingolipids showed higher sensitivity to LPS than wild-type mice, we examined mechanisms by which globo-series glycosphingolipids attenuate LPS toxicity. Cultured endothelial cells lacking A4galt showed higher expression of LPS-inducible genes upon LPS treatment. In turn, introduction of A4galt cDNA resulted in the neo expression of Gb4, leading to the reduced expression of LPS-inducible genes. Exogenous Gb4 induced similar effects. As a mechanism for the suppressive effects of Gb4 on LPS signals, specific binding of Gb4 to the LPS receptor TLR4-MD-2 was demonstrated by coprecipitation of Gb4 with recombinant MD-2 and by native PAGE. A docking model also supported these data. Taken together with colocalization of TLR4-MD-2 with Gb4 in lipid rafts after LPS stimulation, it was suggested that Gb4 competes with LPS for binding to TLR4-MD-2. Finally, administration of Gb4 significantly protected mice from LPS-elicited mortality. These results suggest that Gb4 is an endogenous ligand for TLR4-MD-2 and is capable of attenuating LPS toxicity, indicating the possibility for its therapeutic application in endotoxin shock.
虽然 Toll 样受体 (TLR)4-髓样分化因子 2 (MD2) 的内源性配体尚未得到很好的理解,但我们在这里报告,一种糖鞘脂,即Globotetraosylceramide (Gb4),通过与 TLR4-MD-2 结合来减轻脂多糖 (LPS) 的毒性。由于缺乏Globotetraosylceramide 的 α1,4-半乳糖基转移酶 (A4galt) 缺陷型小鼠对 LPS 的敏感性比野生型小鼠高,因此我们研究了 Globotetraosylceramide 减轻 LPS 毒性的机制。经 LPS 处理后,缺乏 A4galt 的培养内皮细胞中 LPS 诱导基因的表达更高。相反,引入 A4galt cDNA 导致 Gb4 的新表达,从而导致 LPS 诱导基因的表达减少。外源性 Gb4 也诱导了类似的效应。作为 Gb4 对 LPS 信号的抑制作用的机制,通过 Gb4 与重组 MD-2 的共沉淀以及天然 PAGE 证明了 Gb4 与 LPS 受体 TLR4-MD-2 的特异性结合。对接模型也支持了这些数据。结合 LPS 刺激后 TLR4-MD-2 与 Gb4 的共定位,表明 Gb4 与 LPS 竞争与 TLR4-MD-2 结合。最后,Gb4 的给药显著保护了 LPS 诱导的小鼠免于死亡。这些结果表明 Gb4 是 TLR4-MD-2 的内源性配体,能够减轻 LPS 毒性,表明其在内毒素休克治疗中的应用可能性。