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小脑长时程抑制并不需要δ2谷氨酸受体在丝氨酸945处发生磷酸化。

Phosphorylation of delta2 glutamate receptors at serine 945 is not required for cerebellar long-term depression.

作者信息

Nakagami Ryoichi, Kohda Kazuhisa, Kakegawa Wataru, Kondo Tetsuro, Kato Nobumasa, Yuzaki Michisuke

机构信息

Department of Physiology, School of Medicine, Keio University, Department of Psychiatry, University of Tokyo, Tokyo, Japan.

出版信息

Keio J Med. 2008 Jun;57(2):105-10. doi: 10.2302/kjm.57.105.

DOI:10.2302/kjm.57.105
PMID:18677091
Abstract

Long-term depression (LTD) of synaptic transmission at parallel fiber (PF)-Purkinje cell synapses is thought to regulate motor learning and memory formation in the cerebellum. Neuronal activity-evoked protein kinase C (PKC) activation is required for the induction of LTD. In addition, the delta2 glutamate receptor (GluRdelta2), which is predominantly expressed at PF-Purkinje cell synapses, is indispensable for the induction of LTD; however, the mechanisms by which GluRdelta2 regulates LTD and its relationship with PKC activation remain elusive. Interestingly, GluRdelta2 is phosphorylated by PKC on serine 945 (Ser945) near its C-terminus and a postsynaptic protein S-SCAM, which could potentially regulate glutamate receptor trafficking and synaptic plasticity, binds to the extreme C-terminus of GluRdelta2 in a phosphorylation-dependent manner on Ser945. Here, using a Sindbis-based virus expression approach, we show that a mutant GluRdelta2, in which alanine replaced Ser945 and did not undergo PKC phosphorylation, was normally localized at the postsynaptic sites of PF-Purkinje cell synapses. In addition, like wild-type GluRdelta2, the phosphorylation-disrupted GluRdelta2 successfully rescued abrogated LTD in GluRdelta2-null Purkinje cells. These results indicate that Ser945, a major PKC phosphorylation site of of GluRdelta2, may not play a crucial role in induction of LTD in the cerebellum.

摘要

平行纤维(PF)-浦肯野细胞突触处突触传递的长时程抑制(LTD)被认为可调节小脑的运动学习和记忆形成。LTD的诱导需要神经元活动诱发的蛋白激酶C(PKC)激活。此外,主要在PF-浦肯野细胞突触处表达的δ2型谷氨酸受体(GluRδ2)对于LTD的诱导是不可或缺的;然而,GluRδ2调节LTD的机制及其与PKC激活的关系仍不清楚。有趣的是,GluRδ2在其C末端附近的丝氨酸945(Ser945)处被PKC磷酸化,并且一种可能调节谷氨酸受体转运和突触可塑性的突触后蛋白S-SCAM以Ser945磷酸化依赖的方式与GluRδ2的极端C末端结合。在这里,我们使用基于辛德毕斯病毒的表达方法表明,其中丙氨酸取代Ser945且未经历PKC磷酸化的突变型GluRδ2正常定位于PF-浦肯野细胞突触的突触后位点。此外,与野生型GluRδ2一样,磷酸化破坏的GluRδ2成功挽救了GluRδ2基因敲除的浦肯野细胞中被消除的LTD。这些结果表明,Ser945作为GluRδ2的主要PKC磷酸化位点,可能在小脑LTD的诱导中不发挥关键作用。

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