Aderem A A, Cohn Z A
Rockefeller University, New York 10021.
J Exp Med. 1988 Feb 1;167(2):623-31. doi: 10.1084/jem.167.2.623.
LPS, a major component of Gram-negative bacterial cell walls, prime macrophages for greatly enhanced arachidonic acid [20:4] metabolism when the cells are subsequently stimulated. The LPS-primed macrophage has been used as a model system in which to study the role of Ca2+ in the regulation of 20:4 metabolism. The Ca2+ ionophore A23187 (0.1 microM) triggered the rapid release of 20:4 metabolites from LPS-primed macrophages but not from cells not previously exposed to LPS. Macrophages required exposure to LPS for at least 40 min before A23187 became effective as a trigger. A23187 (0.1 microM) also synergized with PMA in activating macrophage 20:4 metabolism. The PMA effect could be distinguished from that of LPS since no preincubation with PMA was required. A23187 greatly increased the amount of lipoxygenase products secreted from LPS-primed macrophages, leukotriene C4 synthesis being increased 150-fold. LPS-primed macrophages, partially permeabilized to Ca2+ with A23187, were used to titrate the Ca2+ concentration dependence of the cyclooxygenase and lipoxygenase pathways. Cyclooxygenase metabolites were detected at an order of magnitude lower Ca2+ concentration than were lipoxygenase products. The data suggest that Ca2+ regulates macrophage 20:4 metabolism at two distinct steps: an increase in intracellular Ca2+ regulates the triggering signal and relatively higher Ca2+ concentrations are required for 5-lipoxygenase activity.
脂多糖(LPS)是革兰氏阴性菌细胞壁的主要成分,当细胞随后受到刺激时,它能使巨噬细胞的花生四烯酸[20:4]代谢大幅增强。经LPS预处理的巨噬细胞已被用作研究Ca2+在20:4代谢调节中作用的模型系统。Ca2+离子载体A23187(0.1微摩尔)能引发经LPS预处理的巨噬细胞快速释放20:4代谢产物,但不会引发未预先接触LPS的细胞释放该产物。巨噬细胞需要接触LPS至少40分钟,A23187才会作为触发因子起作用。A23187(0.1微摩尔)在激活巨噬细胞20:4代谢方面也与佛波酯(PMA)协同作用。PMA的作用与LPS的作用不同,因为不需要预先用PMA孵育。A23187大大增加了经LPS预处理的巨噬细胞分泌的脂氧合酶产物的量,白三烯C4的合成增加了150倍。用A23187使Ca2+部分通透的经LPS预处理的巨噬细胞,用于滴定环氧化酶和脂氧合酶途径对Ca2+浓度的依赖性。检测到环氧化酶代谢产物所需的Ca2+浓度比脂氧合酶产物低一个数量级。数据表明,Ca2+在两个不同步骤调节巨噬细胞20:4代谢:细胞内Ca2+的增加调节触发信号,5-脂氧合酶活性需要相对较高的Ca2+浓度。