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首页> 外文期刊>Journal of Neuroscience Research >RGS9: a regulator of G-protein signalling with specific expression in rat and mouse striatum.
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RGS9: a regulator of G-protein signalling with specific expression in rat and mouse striatum.

机译:RGS9:一种在大鼠和小鼠纹状体内特异性表达的G蛋白信号调节剂。

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摘要

A clone of the regulator of G-protein signalling, RGS9, was isolated from a rat striatum-minus-cerebellum-minus-hippocampus subtracted library generated by directional tag polymerase chain reaction subtraction. The full-length cDNA clone encodes a 444 amino acid protein containing an 118 amino acid RGS domain, which corresponds to an evolutionarily conserved domain that is present in all members of the RGS family of proteins. Outside of the homology domain, RGS9 shows more extended similarity to human RGS6 and RGS7, rat RGS12, and the C. elegans protein EGL-10. During embryonic and early postnatal stages of development, two RGS9 transcripts of approximately 1.4 Kb and 1.8 Kb were detected in whole brain. After postnatal day 10, accumulation of the larger transcript increased progressively until adulthood at the expense of the smaller transcript, which was undetectable in the adult. In adult rat brain, the 1.8-Kb RGS9 transcript was detected in the striatum but not in other brain regions or peripheral tissues. In situ hybridization in rat and mouse demonstrates that RGS9 mRNA is expressed predominantly in medium-sized, spiny neurons of the neostriatum and in neurons of the nucleus accumbens and olfactory tubercle. Relatively strong signals were also detected in some hypothalamic nuclei. Its selective expression suggests that RGS9 may play an important role in modulation of the complex signalling pathways of the basal ganglia.
机译:从大鼠纹状体-小脑-负-海马减去文库中分离出G蛋白信号调节因子RGS9的克隆,该文库通过定向标签聚合酶链反应减法生成。全长cDNA克隆编码一个444个氨基酸的蛋白质,其中包含118个氨基酸的RGS结构域,该结构域对应于RGS蛋白质家族所有成员中存在的进化保守结构域。在同源域之外,RGS9显示出与人RGS6和RGS7,大鼠RGS12和秀丽隐杆线虫蛋白EGL-10更加相似的扩展。在胚胎发育和出生后早期阶段,在全脑中检测到两个约1.4 Kb和1.8 Kb的RGS9转录本。出生后第10天后,大笔录的积累逐渐增加,直到成年为止,但以小笔录为代价,这在成年人中是无法检测到的。在成年大鼠的大脑中,在纹状体中检测到1.8-Kb RGS9转录本,但在其他大脑区域或周围组织中未检测到。在大鼠和小鼠中的原位杂交表明,RGS9 mRNA主要在新纹状体的中型棘状神经元以及伏隔核和嗅结节神经元中表达。在一些下丘脑核中也检测到相对较强的信号。其选择性表达表明RGS9可能在基底神经节的复杂信号通路的调制中发挥重要作用。

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