A possible role of lysophospholipids produced by calcium-independent phospholipase A2 in membrane-raft budding and fission |
| |
Authors: | Takanari Nakano Ikuo Inoue Masanori Matsui Seiichiro Takahashi Masumi Akita Shigeru Hokari Tsugikazu Komoda |
| |
Affiliation: | a Department of Biochemistry, Faculty of Medicine, Saitama Medical University, Saitama 350-0455, Japan b Department of Diabetes and Endocrinology, Faculty of Medicine, Saitama Medical University, Saitama 350-0455, Japan c Department of Microbiology, Faculty of Medicine, Saitama Medical University, Saitama 350-0455, Japan d Department of Morphology, Faculty of Medicine, Saitama Medical University, Saitama 350-0455, Japan |
| |
Abstract: | Phospholipase A2 (PLA2) not only plays a role in the membrane vesiculation system but also mediates membrane-raft budding and fission in artificial giant liposomes. This study aimed to demonstrate the same effects in living cells. Differentiated Caco-2 cells were cultured on filter membranes. MDCK cells were challenged with Influenza virus. The MDCK cultures were harvested for virus titration with a plaque assay. Alkaline phosphatase (ALP), a membrane-raft associated glycosylphosphatidylinositol (GPI)-anchored protein, was 70% released by adding 0.2 mmol/l lysophosphatidylcholine, which was abolished by treatment with a membrane-raft disrupter, methyl-β-cyclodextrin. Activation of calcium-independent PLA2 (iPLA2) by brefeldin A increased the apical release of ALP by approximately 1.5-fold (p < 0.01), which was blocked by PLA2 inhibitor bromoenol lactone (BEL). BEL also reduced Influenza virus production into the media (< 10%) in the MDCK culture. These results suggest that cells utilize inverted corn-shaped lysophospholipids generated by PLA2 to modulate plasma membrane structure and assist the budding of raft-associated plasma membrane particles, which virus utilizes for its budding. Brush borders are enriched with membrane-rafts and undergo rapid turnover; thus, PLA2 may be involved in the regulatory mechanism in membrane dynamism. Further, iPLA2 may provide a therapeutic target for viral infections. |
| |
Keywords: | ALP, alkaline phosphatase LTD4, leukotriene D4 BFA, brefeldin A BEL, bromoenol lactone FCS, fetal calf serum GPI, glycosylphosphatidylinositol GPN, glycyl- smallcaps" >l-phenylalanine 2-naphthylamide LDH, lactate dehydrogenase MAFP, methyl arachidonyl fluorophosphonate MβCD, methyl-β-cyclodextrin PLA2, phospholipase A2 cPLA2, calcium-dependent PLA2 iPLA2, calcium-independent PLA2 TCID50, Tissue Culture Infections Dose 50 |
本文献已被 ScienceDirect 等数据库收录! |
|