Yasumura Misato, Uemura Takeshi, Yamasaki Miwako, Sakimura Kenji, Watanabe Masahiko, Mishina Masayoshi
Department of Molecular Neurobiology and Pharmacology, Graduate School of Medicine, University of Tokyo, Tokyo 113-0033, Japan.
Neurosci Lett. 2008 Mar 12;433(2):146-51. doi: 10.1016/j.neulet.2008.01.009. Epub 2008 Jan 11.
Glutamate receptor (GluR) delta2 selectively expressed in cerebellar Purkinje cells (PCs) plays key roles in cerebellar long-term depression (LTD), motor learning and formation of parallel fiber (PF)-PC synapses. We have recently shown that the PDZ [postsynaptic density (PSD)-95/Discs large/zona occludens-1]-binding domain at the C-terminal, the T site, is essential for LTD induction and the regulation of climbing fiber (CF) territory, but is dispensable for synaptic localization of GluRdelta2, PF-PC synapse formation and CF elimination process. To investigate the functional roles of the S segment, the second PDZ-binding domain in the middle of the C-terminal cytoplasmic region, we generated GluRdelta2DeltaS mice carrying mutant GluRdelta2 lacking this segment. The amount of GluRdelta2DeltaS in mutant mice was reduced compared with that of GluRdelta2 in wild-type mice. However, the extent of decrease was much larger in the PSD fractions than in cerebellar homogenates, suggesting the requirement of the S segment for efficient synaptic localization. Furthermore, mismatched PF synapses and free spines emerged and CF-innervation territory on PC dendrites expanded in GluRdelta2DeltaS mice. On the other hand, the performance in the rotarod test was comparable between wild-type and GluRdelta2DeltaS mice. These results suggest that the S segment and T site, the two PDZ-binding domains in the C-terminal cytoplasmic region, are differentially involved in diverse GluRdelta2 functions.
在小脑浦肯野细胞(PCs)中选择性表达的谷氨酸受体(GluR)δ2,在小脑长时程抑制(LTD)、运动学习以及平行纤维(PF)-PC突触的形成中发挥关键作用。我们最近发现,位于C末端的PDZ[突触后致密物(PSD)-95/盘状大蛋白/紧密连接蛋白-1]结合结构域,即T位点,对于LTD诱导和攀爬纤维(CF)区域的调节至关重要,但对于GluRδ2的突触定位、PF-PC突触形成以及CF消除过程却是可有可无的。为了研究C末端胞质区域中部的第二个PDZ结合结构域S段的功能作用,我们构建了携带缺失该段的突变型GluRδ2的GluRδ2ΔS小鼠。与野生型小鼠中的GluRδ2相比,突变小鼠中GluRδ2ΔS的量减少了。然而,PSD组分中的减少程度比小脑匀浆中的大得多,这表明S段对于有效的突触定位是必需的。此外,在GluRδ2ΔS小鼠中出现了不匹配的PF突触和游离棘突,并且PC树突上的CF支配区域扩大。另一方面,野生型和GluRδ2ΔS小鼠在转棒试验中的表现相当。这些结果表明,C末端胞质区域中的两个PDZ结合结构域S段和T位点,在GluRδ2的多种功能中发挥着不同的作用。