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鞘氨醇磷酸胆碱通过钙、蛋白激酶Cδ和磷脂酶D依赖性途径产生活性氧。

Sphingosylphosphorylcholine generates reactive oxygen species through calcium-, protein kinase Cdelta- and phospholipase D-dependent pathways.

作者信息

Jeon Eun Su, Kang Yong Jung, Song Hae Young, Im Dong-Soon, Kim Hyeon Soo, Ryu Sung Ho, Kim Yong Keun, Kim Jae Ho

机构信息

Department of Physiology and the Medical Research Institute, College of Medicine, Pusan National University, 1-Ga, Ami-Dong, Suh-Gu, Busan 602-739, Republic of Korea.

出版信息

Cell Signal. 2005 Jun;17(6):777-87. doi: 10.1016/j.cellsig.2004.11.004. Epub 2004 Dec 8.

Abstract

Sphingosylphosphorylcholine (SPC) is a bioactive lipid molecule involved in numerous biological processes. Treatment of MS1 pancreatic islet endothelial cells with SPC increased phospholipase D (PLD) activity in a time- and dose-dependent manner. In addition, treatment of the MS1 cells with 10 microM SPC induced stimulation of phospholipase C (PLC) activity and transient elevation of intracellular Ca2+. The SPC-induced PLD activation was prevented by pretreatment of the MS1 cells with a PLC inhibitor, U73122, and an intracellular Ca2+-chelating agent, BAPTA-AM. This suggests that PLC-dependent elevation of intracellular Ca2+ is involved in the SPC-induced activation of PLD. The SPC-dependent PLD activity was also almost completely prevented by pretreatment with pan-specific PKC inhibitors, GF109203X and RO-31-8220, and with a PKCdelta-specific inhibitor, rottlerin, but not by pretreatment with GO6976, a conventional PKC isozymes-specific inhibitor. Adenoviral overexpression of a kinase-deficient mutant of PKCdelta attenuated the SPC-induced PLD activity. These results suggest that PKCdelta plays a crucial role for the SPC-induced PLD activation. The SPC-induced PLD activation was preferentially potentiated in COS-7 cells transfected with PLD2 but not with PLD1, suggesting a specific implication of PLD2 in the SPC-induced PLD activation. SPC treatment induced phosphorylation of PLD2 in COS-7 cells, and overexpression of the kinase-deficient mutant of PKCdelta prevented the SPC-induced phosphorylation of PLD2. Furthermore, SPC treatment generated reactive oxygen species (ROS) in MS1 cells and the SPC induced production of ROS was inhibited by pretreatment with U73122, BAPTA-AM, and rottlerin. In addition, pretreatment with a PLD inhibitor 1-butanol and overexpression of a lipase-inactive mutant of PLD2 but not PLD1 attenuated the SPC-induced generation of ROS. These results suggest that PLC-, Ca2+-, PKCdelta-, and PLD2-dependent pathways are essentially required for the SPC induced ROS generation.

摘要

鞘氨醇磷酸胆碱(SPC)是一种参与众多生物过程的生物活性脂质分子。用SPC处理MS1胰岛内皮细胞会以时间和剂量依赖性方式增加磷脂酶D(PLD)的活性。此外,用10微摩尔SPC处理MS1细胞会诱导磷脂酶C(PLC)活性的刺激以及细胞内Ca2+的短暂升高。用PLC抑制剂U73122和细胞内Ca2+螯合剂BAPTA-AM预处理MS1细胞可阻止SPC诱导的PLD激活。这表明PLC依赖性的细胞内Ca2+升高参与了SPC诱导的PLD激活。用泛特异性PKC抑制剂GF109203X和RO-31-8220以及PKCδ特异性抑制剂rottlerin预处理也几乎完全阻止了SPC依赖性的PLD活性,但用传统PKC同工酶特异性抑制剂GO6976预处理则没有效果。腺病毒介导的PKCδ激酶缺陷突变体的过表达减弱了SPC诱导的PLD活性。这些结果表明PKCδ在SPC诱导的PLD激活中起关键作用。在用PLD2而非PLD1转染的COS-7细胞中,SPC诱导的PLD激活优先增强,这表明PLD2在SPC诱导的PLD激活中具有特定作用。SPC处理诱导了COS-7细胞中PLD2的磷酸化,而PKCδ激酶缺陷突变体的过表达阻止了SPC诱导的PLD2磷酸化。此外,SPC处理在MS1细胞中产生了活性氧(ROS),用U73122、BAPTA-AM和rottlerin预处理可抑制SPC诱导的ROS产生。此外,用PLD抑制剂1-丁醇预处理以及PLD2而非PLD1的脂肪酶无活性突变体的过表达减弱了SPC诱导的ROS产生。这些结果表明,PLC-、Ca2+-、PKCδ-和PLD2依赖性途径对于SPC诱导的ROS产生至关重要。

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