Moon T C, Murakami M, Ashraf M D, Kudo I, Chang H W
College of Pharmacy, Yeungnam University, Gyonsan, Korea.
Cell Immunol. 1998 May 1;185(2):146-52. doi: 10.1006/cimm.1998.1284.
Emerging evidence has suggested the pivotal role of mast cells in a host defense against bacterial infection. In this paper, we report that bacterial lipopolysaccharide (LPS) is a potent enhancer of the cytokine- and IgE-dependent delayed responses of IL-3-dependent mouse bone marrow-derived cultured mast cells (BMMC). LPS, although showing minimal effects, significantly augmented the c-kit ligand (KL)- or IgE-dependent expression of cyclooxygenase (COX)-2 and the attendant delayed PGD2 generation, with IL-10 and IL-4 acting as potentiating and inhibitory cytokines, respectively. The COX-2-inducing activity of LPS was mimicked by exogenous IL-1 beta. Assessment of endogenous cytokine induction revealed that IL-1 beta expression was stimulated by either LPS or exogenous IL-1 beta. IL-6 expression occurred in parallel with COX-2 expression. IL-10 expression, which lagged behind COX-2 expression, depended on exogenous IL-10, but not on LPS and IL-1 beta. Thus, LPS and IL-1 beta exhibited similar biological activities in terms of COX-2 and endogenous cytokine expression. However, adding an antibody against the type I IL-1 receptor to BMMC, which abrogated the effects of IL-1 beta, failed to neutralize the effects of LPS. These results suggest that LPS activates BMMC through the signal transduction pathway shared with exogenous IL-1 beta, rather than exerting its action indirectly via the production of endogenous IL-1 beta.
新出现的证据表明肥大细胞在宿主抵抗细菌感染中起关键作用。在本文中,我们报告细菌脂多糖(LPS)是白细胞介素-3依赖的小鼠骨髓来源培养肥大细胞(BMMC)细胞因子和IgE依赖的延迟反应的有效增强剂。LPS虽然作用微小,但能显著增强c-kit配体(KL)或IgE依赖的环氧化酶(COX)-2表达以及随之而来的延迟性前列腺素D2生成,白细胞介素-10和白细胞介素-4分别作为增强和抑制性细胞因子发挥作用。LPS诱导COX-2的活性可被外源性白细胞介素-1β模拟。对内源性细胞因子诱导的评估显示,LPS或外源性白细胞介素-1β均可刺激白细胞介素-1β表达。白细胞介素-6表达与COX-2表达平行。白细胞介素-10表达滞后于COX-2表达,其依赖于外源性白细胞介素-10,而非LPS和白细胞介素-1β。因此,就COX-2和内源性细胞因子表达而言,LPS和白细胞介素-1β表现出相似的生物学活性。然而,向BMMC中添加抗I型白细胞介素-1受体抗体可消除白细胞介素-1β的作用,但无法中和LPS的作用。这些结果表明,LPS通过与外源性白细胞介素-1β共享的信号转导途径激活BMMC,而非通过内源性白细胞介素-1β的产生间接发挥作用。