Mitsutake Susumu, Kim Tack-Joong, Inagaki Yuichi, Kato Mariko, Yamashita Toshiyuki, Igarashi Yasuyuki
Department of Biomembrane and Biofunctional Chemistry, Graduate School of Pharmaceutical Sciences, Hokkaido University, Kita 12, Nishi 6, Kita-ku, Sapporo 060-0812, Japan.
J Biol Chem. 2004 Apr 23;279(17):17570-7. doi: 10.1074/jbc.M312885200. Epub 2004 Feb 9.
Ceramide kinase (CERK) catalyzes the conversion of ceramide to ceramide 1-phosphate (C1P) and is known to be activated by calcium. Although several groups have examined the functions of CERK and its product C1P, the functions of C1P and CERK are not understood. We studied the RBL-2H3 cell line, a widely used model for mast cells, and found that CERK and C1P are required for activation of the degranulation process in mast cells. We found that C1P formation was enhanced during activation induced by IgE/antigen or by Ca(2+) ionophore A23187. The formation of C1P required the intracellular elevation of Ca(2+). We generated RBL-2H3 cells that stably express CERK, and when these cells were treated with A23187, a concomitant C1P formation was observed and degranulation increased 4-fold, compared with mock transfectants. The cell-permeable N-acetylsphingosine (C(2)-ceramide), a poor substrate of CERK, inhibited both the formation of C1P and degranulation, indicating that C1P formation was necessary for degranulation. Exogenous introduction of CERK into permeabilized RBL-2H3 cells caused degranulation. We identified a cytosolic localization of CERK that provides exposure to cytosolic Ca(2+). Taken together, these results indicate that C1P formation is a necessary step in the degranulation pathway in RBL-2H3 cells.
神经酰胺激酶(CERK)催化神经酰胺转化为神经酰胺1-磷酸(C1P),已知其可被钙激活。尽管有几个研究小组研究了CERK及其产物C1P的功能,但C1P和CERK的功能仍不清楚。我们研究了RBL-2H3细胞系,这是一种广泛用于肥大细胞的模型,发现CERK和C1P是肥大细胞脱颗粒过程激活所必需的。我们发现,在由IgE/抗原或Ca(2+)离子载体A23187诱导的激活过程中,C1P的形成增强。C1P的形成需要细胞内Ca(2+)浓度升高。我们构建了稳定表达CERK的RBL-2H3细胞,当用A23187处理这些细胞时,观察到伴随有C1P的形成,并且与空载体转染细胞相比,脱颗粒增加了4倍。细胞可渗透的N-乙酰鞘氨醇(C(2)-神经酰胺),CERK的一种不良底物,抑制了C1P的形成和脱颗粒,表明C1P的形成是脱颗粒所必需的。将CERK外源导入透化的RBL-2H3细胞会导致脱颗粒。我们确定了CERK的胞质定位,使其能够接触胞质Ca(2+)。综上所述,这些结果表明C1P的形成是RBL-2H3细胞脱颗粒途径中的一个必要步骤。