Kim D K, Rordorf G, Nemenoff R A, Koroshetz W J, Bonventre J V
Medical Service, Massachusetts General Hospital, Boston 02114, USA.
Biochem J. 1995 Aug 15;310 ( Pt 1)(Pt 1):83-90. doi: 10.1042/bj3100083.
The mechanisms by which glutamatergic neurotransmitters modulate neuronal lipid metabolism are not well established. We have directly measured phospholipase A2 (PLA2) enzymic activity in cell-free extracts from cortical neuronal cultures from rat brain and have found that the PLA2 activity is up-regulated after cells are exposed to glutamate. Brief exposure to a calcium ionophore or phorbol 12-myristate 13-acetate (PMA) stably enhanced PLA2 activity. Down-regulation of protein kinase C activity partially blocked glutamate's effects. Two Ca(2+)-and pH-dependent forms of PLA2 were identified in cytosolic extracts. Activation of both forms of PLA2 was enhanced by prior exposure of the cultures to glutamate. One of the two forms had chromatographic characteristics on heparin-Sepharose, Mono Q and Superose 12 columns similar to the 100 kDa cytosolic PLA2 (cPLA2), and was recognized by an antibody raised to pig spleen cPLA2. The second form was similar in size to Group-I and -II PLA2s but differed in chromatographic characteristics. It was not inhibited by dithiothreitol, and did not react with antibodies to pancreatic Group-I PLA2, features that distinguish it from Group-I and -II PLA2. In extracts from cells pretreated with glutamate, the activity-Ca2+ concentration dose-response relationship of the 13.5 kDa form of PLA2 was shifted to the left with activation at lower Ca2+ concentration as the result of stable modification of the enzyme induced by glutamate. Thus glutamate-induced stable enhancement of PLA2 activity, by processes involving calcium and protein kinase C activation, is a potential molecular switch probably mediating changes in synaptic function and contributing to excitotoxicity.
谷氨酸能神经递质调节神经元脂质代谢的机制尚未完全明确。我们直接测量了来自大鼠大脑皮质神经元培养物的无细胞提取物中的磷脂酶A2(PLA2)酶活性,发现细胞暴露于谷氨酸后PLA2活性上调。短暂暴露于钙离子载体或佛波酯12-肉豆蔻酸酯13-乙酸酯(PMA)可稳定增强PLA2活性。蛋白激酶C活性的下调部分阻断了谷氨酸的作用。在胞质提取物中鉴定出两种钙和pH依赖性的PLA2形式。两种形式的PLA2的激活在培养物预先暴露于谷氨酸后均增强。两种形式中的一种在肝素-琼脂糖、Mono Q和Superose 12柱上的色谱特征与100 kDa胞质PLA2(cPLA2)相似,并被针对猪脾cPLA2产生的抗体识别。第二种形式的大小与I组和II组PLA2相似,但色谱特征不同。它不受二硫苏糖醇抑制,也不与针对胰腺I组PLA2的抗体反应,这些特征将其与I组和II组PLA2区分开来。在用谷氨酸预处理的细胞提取物中,13.5 kDa形式的PLA2的活性-钙浓度剂量反应关系向左移动,在较低钙浓度下激活,这是谷氨酸诱导的酶稳定修饰的结果。因此,谷氨酸诱导的PLA2活性的稳定增强,通过涉及钙和蛋白激酶C激活的过程,是一个潜在的分子开关,可能介导突触功能的变化并导致兴奋性毒性。