Ox-LDL can enhance the interaction of mice natural killer cells and dendritic cells via the CD48-2B4 pathway
HEART AND VESSELS
Authors: Dong, Kan; Ge, Jun-Hua; Gu, Shu-Lian; Li, Shan; Zhu, Wei-Guo; Fan, Fang-Yan; Zhu, Jian-Hua
Abstract
The importance of the interaction between natural killer (NK) cells and dendritic cells (DCs) in the expansion of antiviral and antitumor immune responses is well documented; however, limited information on NK/DC interaction during atherosclerosis is available. Inflammation plays an important role in the development of atherosclerosis, and oxidized low-density lipoprotein (ox-LDL) is believed to play a critical role in the development and progression of atherosclerosis. In this study, we developed a NK/DC coculture system to examine the role of ox-LDL in modulating the interaction of mice NK cells and DCs. Fresh NK cells were cocultured with DCs in the absence or presence of ox-LDL. We examined the cytokines released during the interaction. This report provides the first evidence of an enhancement effect by ox-LDL on the NK/DC crosstalk. Notably, we found that ox-LDL significantly promoted the interaction of NK cells and DCs via CD48-2B4 contact-dependent mechanisms. These findings highlight the importance of NK/DCs crosstalk in atherosclerosis and provide new information about the possible mechanisms of atherosclerosis.
Development of an In Vivo Gene Mutation Assay Using the Endogenous Pig-A Gene: II. Selection of Pig-A Mutant Rat Spleen T-Cells With Proaerolysin and Sequencing Pig-A cDNA From the Mutants
ENVIRONMENTAL AND MOLECULAR MUTAGENESIS
Authors: Miura, Daishiro; Dobrovolsky, Vasily N.; Mittelstaedt, Roberto A.; Kasahara, Yoshinori; Katsuura, Yasuhiro; Heflich, Robert H.
Abstract
We previously reported that rat spleen T-cells and peripheral red blood cells that are deficient in glycosylphosphatidylinositol (GPI) synthesis [presumed mutants for the phosphatidylinositol glycon complementation group A gene (Pig-A)] could be detected by flow cytometry (FCM) as cells negative for GPI-linked markers (CD48 and CD59, respectively). To establish this procedure as a rapid in vivo gene mutation assay, we have examined the Pig-A gene of GPI-deficient rat spleen T-cells for DNA sequence alterations. Splenocytes were isolated from male F344 rats, primed with ionomycin and phorbol-12-myristate-13-acetate, and seeded at limiting-dilution into 96-well plates. To select for GPI-deficient T-cells, the cells were cultured for 10 days in a medium containing rat T-STIII and 2 nM proaerolysin (ProAER). The frequency of ProAER-resistant (ProAER(r)) spleen T-cells from control rats ranged from 1.3 X 10(-6) to 4.8 X 10-6, While administration of three doses of 40 mg/kg N-ethyl-N-nitrosourea increased the frequency of ProAER(r) T-cells 100-fold at 4 weeks after dosing. FCM analysis of the cells in PrOAER(r) clones revealed that they were CD48-negative, and thus presumably GPI-deficient. Sequencing of Pig-A cDNA from six ProAERr clones indicated that they all contained alterations in the Pig-A protein coding sequence; five had base pair substitutions and one had multiple exons deleted. These results indicate that GPI-deficient spleen T-cells are Pig-A gene mutants and support the use of FCM analysis of GPI-deficient cells as a rapid assay for measuring in vivo gene mutation. Environ. Mal. Mutagen. 19:622-630, 2008. Published 2008 Wiley-Liss, Inc.