Yamashita Atsushi, Kumazawa Tsukasa, Koga Hiroki, Suzuki Naotaka, Oka Saori, Sugiura Takayuki
Faculty of Pharmaceutical Sciences, Teikyo University, Sagamiko, Sagamihara, Kanagawa 229-0195, Japan.
Biochim Biophys Acta. 2010 Jul;1801(7):711-20. doi: 10.1016/j.bbalip.2010.03.012. Epub 2010 Mar 30.
GPR55 is a seven-transmembrane G-protein-coupled receptor that has been proposed as a novel type of cannabinoid receptor. Previously, we identified lysophosphatidylinositol (LPI), in particular 2-arachidonoyl-LPI, as an agonist for GPR55. In the present study, we examined whether intracellular phospholipase A1 (DDHD domain containing 1, or DDHD1), previously identified as phosphatidic acid (PA)-preferring PLA1 (PA-PLA1), is involved in the formation of 2-arachidonoyl-LPI. HEK293 cells expressing DDHD1 produced [(3)H]arachidonic acid-containing LPI after prelabeling with [(3)H]arachidonic acid and subsequent activation by ionomycin; the formation of [(3)H]LPI was inhibited by n-butanol and the overexpression of an inactive PLD1 mutant PLD1K898R. DDHD1 was translocated from the cytosol to membranes upon ionomycin treatment. A purified recombinant DDHD1 formed [(3)H]LPI when incubated with [(3)H]PI; the V(max) and apparent K(m) were 190 micromol/min/mg protein and 10 mol% PI, respectively. DDHD1 binds PA, and the addition of PA to DDHD1 increased the affinity for PI (K(m) ; 3 mol%) and augmented the PI-PLA1 activity. DDHD1 activated by PA was returned to a basal state by its own PA-hydrolytic activity. These results implicate DDHD1 in the formation of 2-arachidonoyl-LPI and indicate that the process is modulated by PA released by phospholipase D. Similar observations for the production of arachidonic acid-containing LPI in neuroblastoma cells suggest the DDHD1-LPI-GPR55 axis to be involved in functions in the brain.
GPR55是一种七跨膜G蛋白偶联受体,已被提出作为一种新型的大麻素受体。此前,我们鉴定出溶血磷脂酰肌醇(LPI),特别是2-花生四烯酰-LPI,为GPR55的激动剂。在本研究中,我们检测了先前被鉴定为偏好磷脂酸(PA)的磷脂酶A1(含DDHD结构域1,即DDHD1)是否参与2-花生四烯酰-LPI的形成。表达DDHD1的HEK293细胞在用[³H]花生四烯酸预标记并随后用离子霉素激活后,产生了含[³H]花生四烯酸的LPI;[³H]LPI的形成受到正丁醇和无活性PLD1突变体PLD1K898R过表达的抑制。离子霉素处理后,DDHD1从细胞质转移到细胞膜。纯化的重组DDHD1与[³H]PI孵育时形成[³H]LPI;V(max)和表观K(m)分别为190 μmol/min/mg蛋白和10 mol% PI。DDHD1结合PA,向DDHD1中添加PA增加了对PI的亲和力(K(m);3 mol%)并增强了PI-PLA1活性。被PA激活的DDHD1通过其自身的PA水解活性恢复到基础状态。这些结果表明DDHD1参与2-花生四烯酰-LPI的形成,并表明该过程受到磷脂酶D释放的PA的调节。对神经母细胞瘤细胞中含花生四烯酸LPI产生的类似观察结果表明,DDHD1-LPI-GPR55轴参与大脑中的功能。