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吗啡诱导泛素-蛋白酶体活性及谷氨酸转运体降解。

Morphine induces ubiquitin-proteasome activity and glutamate transporter degradation.

作者信息

Yang Liling, Wang Shuxing, Sung Backil, Lim Grewo, Mao Jianren

机构信息

MGH Center for Translational Pain Research, Department of Anesthesia and Critical Care, Massachusetts General Hospital, Harvard Medical School, 75 Parkman Street, Boston, MA 02114, USA.

出版信息

J Biol Chem. 2008 Aug 1;283(31):21703-13. doi: 10.1074/jbc.M800809200. Epub 2008 Jun 6.

Abstract

Glutamate transporters play a crucial role in physiological glutamate homeostasis, neurotoxicity, and glutamatergic regulation of opioid tolerance. However, how the glutamate transporter turnover is regulated remains poorly understood. Here we show that chronic morphine exposure induced posttranscriptional down-regulation of the glutamate transporter EAAC1 in C6 glioma cells with a concurrent decrease in glutamate uptake and increase in proteasome activity, which were blocked by the selective proteasome inhibitor MG-132 or lactacystin but not the lysosomal inhibitor chloroquin. At the cellular level, chronic morphine induced the PTEN (phosphatase and tensin homolog deleted on chromosome Ten)-mediated up-regulation of the ubiquitin E3 ligase Nedd4 via cAMP/protein kinase A signaling, leading to EAAC1 ubiquitination and proteasomal degradation. Either Nedd4 or PTEN knockdown with small interfering RNA prevented the morphine-induced EAAC1 degradation and decreased glutamate uptake. These data indicate that cAMP/protein kinase A signaling serves as an intracellular regulator upstream to the activation of the PTEN/Nedd4-mediated ubiquitin-proteasome system activity that is critical for glutamate transporter turnover. Under an in vivo condition, chronic morphine exposure also induced posttranscriptional down-regulation of the glutamate transporter EAAC1, which was prevented by MG-132, and transcriptional up-regulation of PTEN and Nedd4 within the spinal cord dorsal horn. Thus, inhibition of the ubiquitin-proteasome-mediated glutamate transporter degradation may be an important mechanism for preventing glutamate overexcitation and may offer a new strategy for treating certain neurological disorders and improving opioid therapy in chronic pain management.

摘要

谷氨酸转运体在生理状态下的谷氨酸稳态、神经毒性以及阿片类药物耐受性的谷氨酸能调节中发挥着关键作用。然而,谷氨酸转运体的周转是如何被调控的,目前仍知之甚少。在此我们表明,慢性吗啡暴露可诱导C6胶质瘤细胞中谷氨酸转运体EAAC1的转录后下调,同时谷氨酸摄取减少,蛋白酶体活性增加,而选择性蛋白酶体抑制剂MG - 132或乳胞素可阻断这些变化,但溶酶体抑制剂氯喹则不能。在细胞水平上,慢性吗啡通过cAMP/蛋白激酶A信号通路诱导PTEN(第10号染色体缺失的磷酸酶和张力蛋白同源物)介导的泛素E3连接酶Nedd4上调,导致EAAC1泛素化和蛋白酶体降解。用小干扰RNA敲低Nedd4或PTEN均可阻止吗啡诱导的EAAC1降解并减少谷氨酸摄取。这些数据表明,cAMP/蛋白激酶A信号通路作为细胞内上游调节因子,激活了对谷氨酸转运体周转至关重要的PTEN/Nedd4介导的泛素 - 蛋白酶体系统活性。在体内条件下,慢性吗啡暴露也可诱导谷氨酸转运体EAAC1的转录后下调,MG - 132可阻止这种下调,同时还可诱导脊髓背角内PTEN和Nedd4的转录上调。因此,抑制泛素 - 蛋白酶体介导的谷氨酸转运体降解可能是预防谷氨酸过度兴奋的重要机制,并且可能为治疗某些神经系统疾病以及改善慢性疼痛管理中的阿片类药物治疗提供新策略。

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