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Regulation of motor performance and striatal function by synaptic scaffolding proteins of the Homer1 family

机译:通过Homer1家族的突触支架蛋白调节运动表现和纹状体功能。

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Intracellular calcium mobilization and signaling mechanisms triggered by activation of synaptic glutamate receptors in the striatum are important modulators of neurotransmission in striatal circuits. However, the expression and functions of scaffolding proteins anchoring glutamate receptors at striatal synapses have not been addressed so far. The long-form Homer1 proteins, Homer1b/c, assemble group Ⅰ metabotropic glutamate receptors (mGluR1/5) in large macromolecular complexes with sources of calcium influx and release at synapses as well as with components of the NMDA receptor complex at the neuronal cell membrane. Homer1a, the short, activity-dependent splice variant of Homer1b/c, lacks the ability of linking mGluR1/5 to synaptic proteins and functions as an endogenous negative modulator of the mGluR1/5 inositol 1,4,5-trisphosphate receptor signaling complex. We have generated transgenic mice, which overexpress Homer1a in striatal medium spiny neurons either homogenously throughout the extrastriosomal matrix (Homer1a-matrix line) or predominantly in striosomal patches (Homer1a-strio-some line). Homer1a-expressing mice demonstrated normal development of striatal structure and afferent-efferent connectivity. However, motor performance in behavioral tasks and striatal responses to the psychomotor stimulant amphetamine were significantly altered in the Homer1a-striosome line. Thus, glutamate receptor scaffolding proteins of the Homer1 family critically regulate the functions of striatal medium spiny neurons in complex motor tasks and its modulation by psychomotor stimulant drugs.
机译:纹状体中突触谷氨酸受体激活触发的细胞内钙动员和信号传导机制是纹状体回路中神经传递的重要调节剂。然而,到目前为止,尚未解决在纹状体突触处锚定谷氨酸受体的支架蛋白的表达和功能。长形式的Homer1蛋白Homer1b / c在大分子复合物中组装了Ⅰ组代谢型谷氨酸受体(mGluR1 / 5),具有钙内流和在突触中释放以及在神经元细胞膜上具有NMDA受体复合物的成分。 。 Homer1a,Homer1b / c的短,依赖于活动的剪接变体,缺乏将mGluR1 / 5连接到突触蛋白的能力,并且作为mGluR1 / 5肌醇1,4,5-三磷酸受体信号复合物的内源性负调节剂。我们已经产生了转基因小鼠,它们在纹状体中棘神经元中过表达Homer1a,在整个纹状体外基质中均质(Homer1a-matrix line)或在纹状体斑块(Homer1a-strio-some line)中过表达。表达Homer1a的小鼠表现出纹状体结构的正常发育和传入-传入连接。但是,在Homer1a-纹状体细胞系中,行为任务的运动表现和对精神运动刺激剂苯丙胺的纹状体反应显着改变。因此,Homer1家族的谷氨酸受体支架蛋白在复杂的运动任务中关键调节纹状体中棘神经元的功能,并通过精神运动刺激药物对其进行调节。

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