St-Onge Mireille, Flamand Nicolas, Biarc Jordane, Picard Serge, Bouchard Line, Dussault Andrée-Anne, Laflamme Cynthia, James Michael J, Caughey Gillian E, Cleland Leslie G, Borgeat Pierre, Pouliot Marc
Centre de Recherche en Rhumatologie et Immunologie du CHUQ (CHUL), Sainte-Foy, and Department of Anatomy-Physiology, Faculty of Medicine, Laval University, Quebec, Canada, and Rheumatology Unit, Royal Adelaide Hospital, SA, Australia.
Biochim Biophys Acta. 2007 Sep;1771(9):1235-45. doi: 10.1016/j.bbalip.2007.06.002. Epub 2007 Jun 28.
In the present study, we characterized the generation of prostaglandin (PG)E2 in human neutrophils. We found that the Ca2+-dependent type IV cytosolic phospholipase A2 (cPLA2) was pivotally involved in the COX-2-mediated generation of PGE2 in response to a calcium ionophore, as determined by the use of selected PLA2 inhibitors. PGE2 biosynthesis elicited by bacterial-derived peptides or by phagocytic stimuli acting on cell surface receptors also showed to be dependent on cPLA2 activity. We then assessed metabolism of unesterified arachidonic acid (AA), and observed that PGE2 production becomes favored over that of LTB4 with higher AA concentrations. Withdrawal of calcium prevented the generation of PGE2 in response to a calcium ionophore but did not affect the up-regulation of COX-2 or its capacity to convert AA, thus limiting its implication at the level of cPLA2 activation. Of the main eicosanoids produced by neutrophils, only LTB4 was able to up-regulate COX-2 expression. Finally, the only PGE synthase isoform found in neutrophils is microsomal PGE synthase-1; it co-localized with COX-2 and its expression appeared mainly constitutive. These results highlight key differences in regulatory processes of the 5-LO and COX pathways, and enhance our knowledge at several levels in the PGE2 biosynthesis in neutrophils.
在本研究中,我们对人中性粒细胞中前列腺素(PG)E2的生成进行了表征。我们发现,通过使用特定的磷脂酶A2抑制剂确定,钙离子依赖性IV型胞质磷脂酶A2(cPLA2)在钙离子载体刺激下COX-2介导的PGE2生成中起关键作用。细菌衍生肽或作用于细胞表面受体的吞噬刺激引发的PGE2生物合成也显示依赖于cPLA2活性。然后我们评估了未酯化花生四烯酸(AA)的代谢,并观察到在较高AA浓度下,PGE2的生成比LTB4更占优势。去除钙离子可阻止对钙离子载体刺激产生PGE2,但不影响COX-2的上调或其转化AA的能力,从而限制了其在cPLA2激活水平上的作用。在中性粒细胞产生的主要类花生酸中,只有LTB4能够上调COX-2的表达。最后,在中性粒细胞中发现的唯一PGE合酶同工型是微粒体PGE合酶-1;它与COX-2共定位,其表达主要呈组成型。这些结果突出了5-脂氧合酶和COX途径调控过程中的关键差异,并在多个层面增强了我们对中性粒细胞中PGE2生物合成的认识。