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代谢型谷氨酸受体mGlu5控制培养的小脑神经元发育性凋亡的起始。

The metabotropic glutamate receptor mGlu5 controls the onset of developmental apoptosis in cultured cerebellar neurons.

作者信息

Copani A, Casabona G, Bruno V, Caruso A, Condorelli D F, Messina A, Di Giorgi Gerevini V, Pin J P, Kuhn R, Knöpfel T, Nicoletti F

机构信息

Institute of Pharmacology, School of Pharmacy, University of Catania, Italy.

出版信息

Eur J Neurosci. 1998 Jun;10(6):2173-84. doi: 10.1046/j.1460-9568.1998.00230.x.

Abstract

Cultured cerebellar granule cells grown in medium containing 10 mM K+ undergo apoptosis after 4-5 days in vitro (DIV), and, at that time, the activity of metabotropic glutamate (mGlu) receptors coupled to polyphosphoinositide (PI) hydrolysis begins to decline. In granule cells at 4 DIV, the mGlu receptor subtype mGlu5 was expressed at high levels. The expression of another PI-coupled mGlu receptor, the mGlu1a, was low at 4 DIV but increased during the following days. In cultures at 4-5 DIV, the few cells that already showed an apoptotic phenotype were devoid of mGlu5 receptors, but they all expressed mGlu1a receptors. The development of apoptosis was accelerated after treating the cultures with: (i) mGlu5 antisense oligonucleotides; (ii) the mixed mGlu receptor antagonist, (+)-alpha-methyl-4-carboxyphenylglycine; or (iii) the glutamate depleting enzyme, alanine aminotransferase. In contrast, an induced overexpression of mGlu5 receptors protected cultured granule cells against apoptotic death. We suggest that the activity of mGlu5 receptors supports cell survival, and a decline in the expression of mGlu5 receptors gives access to programmed cell death in cerebellar granule cells developing in primary cultures.

摘要

在含有10 mM钾离子的培养基中培养的小脑颗粒细胞,在体外培养4 - 5天后会发生凋亡,此时,与多磷酸肌醇(PI)水解偶联的代谢型谷氨酸(mGlu)受体的活性开始下降。在培养4天的颗粒细胞中,mGlu受体亚型mGlu5高水平表达。另一种与PI偶联的mGlu受体mGlu1a,在培养4天时表达水平较低,但在随后几天中增加。在培养4 - 5天的细胞培养物中,少数已呈现凋亡表型的细胞缺乏mGlu5受体,但它们都表达mGlu1a受体。在用以下方法处理细胞培养物后,凋亡进程加速:(i)mGlu5反义寡核苷酸;(ii)混合的mGlu受体拮抗剂(+)-α-甲基-4-羧基苯甘氨酸;或(iii)谷氨酸消耗酶丙氨酸转氨酶。相反,mGlu5受体的诱导性过表达可保护培养的颗粒细胞免于凋亡死亡。我们认为,mGlu5受体的活性支持细胞存活,而mGlu5受体表达的下降会导致原代培养中正在发育的小脑颗粒细胞发生程序性细胞死亡。

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