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发育调控的神经酰胺合酶 6 增加线粒体钙加载能力并促进细胞凋亡。

Developmentally regulated ceramide synthase 6 increases mitochondrial Ca2+ loading capacity and promotes apoptosis.

机构信息

Ralph H Johnson Veterans Affairs Medical Center, Charleston, South Carolina 29401, USA.

出版信息

J Biol Chem. 2011 Feb 11;286(6):4644-58. doi: 10.1074/jbc.M110.164392. Epub 2010 Dec 10.

Abstract

Ceramides, which are membrane sphingolipids and key mediators of cell-stress responses, are generated by a family of (dihydro) ceramide synthases (Lass1-6/CerS1-6). Here, we report that brain development features significant increases in sphingomyelin, sphingosine, and most ceramide species. In contrast, C(16:0)-ceramide was gradually reduced and CerS6 was down-regulated in mitochondria, thereby implicating CerS6 as a primary ceramide synthase generating C(16:0)-ceramide. Investigations into the role of CerS6 in mitochondria revealed that ceramide synthase down-regulation is associated with dramatically decreased mitochondrial Ca(2+)-loading capacity, which could be rescued by addition of ceramide. Selective CerS6 complexing with the inner membrane component of the mitochondrial permeability transition pore was detected by immunoprecipitation. This suggests that CerS6-generated ceramide could prevent mitochondrial permeability transition pore opening, leading to increased Ca(2+) accumulation in the mitochondrial matrix. We examined the effect of high CerS6 expression on cell survival in primary oligodendrocyte (OL) precursor cells, which undergo apoptotic cell death during early postnatal brain development. Exposure of OLs to glutamate resulted in apoptosis that was prevented by inhibitors of de novo ceramide biosynthesis, myriocin and fumonisin B1. Knockdown of CerS6 with siRNA reduced glutamate-triggered OL apoptosis, whereas knockdown of CerS5 had no effect: the pro-apoptotic role of CerS6 was not stimulus-specific. Knockdown of CerS6 with siRNA improved cell survival in response to nerve growth factor-induced OL apoptosis. Also, blocking mitochondrial Ca(2+) uptake or decreasing Ca(2+)-dependent protease calpain activity with specific inhibitors prevented OL apoptosis. Finally, knocking down CerS6 decreased calpain activation. Thus, our data suggest a novel role for CerS6 in the regulation of both mitochondrial Ca(2+) homeostasis and calpain, which appears to be important in OL apoptosis during brain development.

摘要

神经酰胺是细胞膜神经鞘脂类的重要组成部分,也是细胞应激反应的关键介质,由一系列二氢神经酰胺合成酶(Lass1-6/CerS1-6)生成。在此,我们报告在大脑发育过程中,神经鞘磷脂、神经醇和大多数神经酰胺的含量显著增加。相反,C16:0-神经酰胺逐渐减少,CerS6 在线粒体中下调,表明 CerS6 是生成 C16:0-神经酰胺的主要神经酰胺合成酶。CerS6 在线粒体中的作用研究表明,神经酰胺合成酶下调与线粒体 Ca2+加载能力显著降低有关,而添加神经酰胺可恢复该能力。通过免疫沉淀检测到 CerS6 与线粒体通透性转换孔内膜成分的选择性复合。这表明 CerS6 生成的神经酰胺可防止线粒体通透性转换孔开放,导致线粒体基质中 Ca2+积累增加。我们研究了高 CerS6 表达对原代少突胶质前体细胞(OL 前体细胞)存活的影响,OL 前体细胞在大脑发育早期会发生凋亡性细胞死亡。谷氨酸暴露可导致 OL 凋亡,而从头合成神经酰胺的抑制剂——美罗昔康和伏马菌素 B1 可阻止这种凋亡。用 siRNA 敲低 CerS6 可减少谷氨酸触发的 OL 凋亡,而敲低 CerS5 则没有效果:CerS6 的促凋亡作用不是刺激特异性的。用 siRNA 敲低 CerS6 可改善神经生长因子诱导的 OL 凋亡后的细胞存活。此外,用特定抑制剂阻断线粒体 Ca2+摄取或降低 Ca2+依赖性蛋白酶钙蛋白酶的活性可阻止 OL 凋亡。最后,敲低 CerS6 可减少钙蛋白酶的激活。因此,我们的数据表明 CerS6 在调节线粒体 Ca2+稳态和钙蛋白酶方面发挥了新的作用,这在大脑发育过程中少突胶质细胞凋亡中似乎很重要。

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