Sonoda Hirofumi, Aoki Junken, Hiramatsu Tatsufumi, Ishida Mayuko, Bandoh Koji, Nagai Yuki, Taguchi Ryo, Inoue Keizo, Arai Hiroyuki
Graduate School of Pharmaceutical Sciences, the University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
J Biol Chem. 2002 Sep 13;277(37):34254-63. doi: 10.1074/jbc.M201659200. Epub 2002 Jun 12.
Lysophosphatidic acid (LPA) is a lipid mediator with diverse biological properties, although its synthetic pathways have not been completely solved. We report the cloning and characterization of a novel phosphatidic acid (PA)-selective phospholipase A(1) (PLA(1)) that produces 2-acyl-LPA. The PLA(1) was identified in the GenBank(TM) data base as a close homologue of phosphatidylserine (PS)-specific PLA(1) (PS-PLA(1)). When expressed in insect Sf9 cells, this enzyme was recovered from the Triton X-100-insoluble fraction and did not show any catalytic activity toward exogenously added phospholipid substrates. However, culture medium obtained from Sf9 cells expressing the enzyme was found to activate EDG7/LPA(3), a cellular receptor for 2-acyl-LPA. The activation of EDG7 was further enhanced when the cells were treated with phorbol ester or a bacterial phospholipase D, suggesting involvement of phospholipase D in the process. In the latter condition, an increased level of LPA, but not other lysophospholipids, was confirmed by mass spectrometry analyses. Expression of the enzyme is observed in several human tissues such as prostate, testis, ovary, pancreas, and especially platelets. These data show that the enzyme is a membrane-associated PA-selective PLA(1) and suggest that it has a role in LPA production.
溶血磷脂酸(LPA)是一种具有多种生物学特性的脂质介质,尽管其合成途径尚未完全明确。我们报道了一种新型磷脂酸(PA)选择性磷脂酶A1(PLA1)的克隆和特性分析,该酶可产生2-酰基-LPA。在GenBank数据库中,该PLA1被鉴定为磷脂酰丝氨酸(PS)特异性PLA1(PS-PLA1)的紧密同源物。当在昆虫Sf9细胞中表达时,这种酶可从Triton X-100不溶性部分中回收,并且对外源添加的磷脂底物没有任何催化活性。然而,从表达该酶的Sf9细胞获得的培养基被发现可激活EDG7/LPA(3),一种2-酰基-LPA的细胞受体。当细胞用佛波酯或细菌磷脂酶D处理时,EDG7的激活进一步增强,表明磷脂酶D参与了该过程。在后一种情况下,通过质谱分析证实LPA水平升高,而其他溶血磷脂水平未升高。在前列腺、睾丸、卵巢、胰腺等几种人体组织中均观察到该酶的表达,尤其是在血小板中。这些数据表明该酶是一种膜相关的PA选择性PLA1,并提示其在LPA产生中起作用。