Balsinde J, Dennis E A
Department of Chemistry and Biochemistry, Revelle College and School of Medicine, University of California, La Jolla, California 92093-0601, USA.
J Biol Chem. 1996 Dec 13;271(50):31937-41. doi: 10.1074/jbc.271.50.31937.
Bromoenol lactone (BEL) has previously been identified as a potent, irreversible, mechanism-based phospholipase A2 (PLA2) inhibitor that possesses greater than 1000-fold selectivity for inhibition of Ca2+-independent PLA2 (iPLA2) versus the Ca2+-dependent ones. Thus, this compound has been used as a selective tool for studies aimed at elucidating the role of iPLA2 in certain cellular functions. Herein we report that BEL also inhibits cellular phosphatidic acid phosphohydrolase (PAP) activity in intact P388D1 macrophages with an IC50 of about 8 microM, which is very similar to that previously found for inhibition of iPLA2 under the same experimental conditions. This results in the blockage of the incorporation of exogenous arachidonate and palmitate into diacylglycerol and triacylglycerol. Thus, inhibition of PAP by BEL blocks triacylglycerol biosynthesis in P388D1 cells due to decreased diacylglycerol availability. Because two forms of PAP activity exist in mammalian cells, differential assays were performed to identify which of these forms was inhibited by BEL. The results of these experiments revealed that BEL selectively inhibits the cytosolic, Mg2+-dependent enzyme. No apparent effect of BEL on the membrane-bound Mg2+-independent PAP form could be detected. Collectively, the results reported herein establish that BEL inhibits two cellular phospholipases, namely iPLA2 and Mg2+-dependent PAP, with similar potency. Therefore, the inhibitory effect of BEL on Mg2+-dependent PAP might explain several cellular functions previously attributed to iPLA2.
溴代烯醇内酯(BEL)先前已被鉴定为一种强效、不可逆、基于机制的磷脂酶A2(PLA2)抑制剂,对抑制不依赖Ca2+的PLA2(iPLA2)的选择性比对依赖Ca2+的PLA2高1000倍以上。因此,该化合物已被用作一种选择性工具,用于旨在阐明iPLA2在某些细胞功能中作用的研究。在此我们报告,BEL在完整的P388D1巨噬细胞中也抑制细胞磷脂酸磷酸水解酶(PAP)活性,IC50约为8 microM,这与先前在相同实验条件下抑制iPLA2时发现的值非常相似。这导致外源性花生四烯酸和棕榈酸掺入二酰基甘油和三酰基甘油受阻。因此,BEL对PAP的抑制由于二酰基甘油可用性降低而阻断了P388D1细胞中三酰基甘油的生物合成。由于哺乳动物细胞中存在两种形式的PAP活性,因此进行了差异测定以确定这些形式中的哪一种被BEL抑制。这些实验结果表明,BEL选择性抑制胞质、依赖Mg2+的酶。未检测到BEL对膜结合的不依赖Mg2+的PAP形式有明显影响。总体而言,本文报道的结果表明,BEL以相似的效力抑制两种细胞磷脂酶,即iPLA2和依赖Mg2+的PAP。因此,BEL对依赖Mg2+的PAP的抑制作用可能解释了先前归因于iPLA2的几种细胞功能。