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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Developmental regulation of metabotropic glutamate receptor 5b protein in rodent brain.
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Developmental regulation of metabotropic glutamate receptor 5b protein in rodent brain.

机译:啮齿动物脑中代谢型谷氨酸受体5b蛋白的发育调控。

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摘要

The metabotropic glutamate receptor type 5 (mGlu5) is expressed in two splice variants, mGlu5a and mGlu5b, which differ in that mGlu5b has a 33-amino acid insert in the intracellular C-terminal domain. This receptor subtype is highly regulated, with higher levels found in developing animals, but the contributions of the individual splice variants to the receptor population at any time are unknown. An antibody that specifically reacts with the insert was developed and used to measure the regional and developmental distribution of mGlu5b in the mouse and rat brain. In contrast to total mGlu5 receptor protein, most brain regions exhibit a less than two-fold alteration between post-natal day 7 and adult levels of mGlu5b. In the adult cortex, there is a three-fold increase of mGlu5b protein relative to at post-natal day 7. Estimates of mGlu5a protein indicate that most of the developmental alteration in total mGlu5 is due to changes in expression of this variant. Comparison of mGlu5b protein and mRNA levels indicates that greatly different post-transcriptional regulation occurs across brain regions.These results indicate that mGlu5 expression is precisely and complexly controlled at the level of transcription and that different functions of mGlu5 during different developmental periods and in distinct regions are likely mediated by different splice variants.
机译:5型代谢型谷氨酸受体(mGlu5)在两个剪接变体mGlu5a和mGlu5b中表达,不同之处在于mGlu5b在细胞内C端结构域中具有33个氨基酸插入物。该受体亚型受到高度调节,在发育中的动物中水平较高,但是在任何时候,各个剪接变体对受体群体的贡献都是未知的。开发了一种与插入物特异性反应的抗体,并将其用于测量mGlu5b在小鼠和大鼠大脑中的区域和发育分布。与总的mGlu5受体蛋白相反,大多数大脑区域在出生后第7天与成人的mGlu5b水平之间表现出不到两倍的变化。在成年皮质中,相对于出生后第7天,mGlu5b蛋白增加了三倍。对mGlu5a蛋白的估计表明,总mGlu5的大部分发育改变是由于该变异体表达的变化所致。 mGlu5b蛋白和mRNA水平的比较表明,整个大脑区域发生转录后调控的差异很大。这些结果表明,mGlu5的表达在转录水平上受到精确,复杂的控制,并且在不同的发育时期和不同的区域中,mGlu5的功能不同。可能由不同的剪接变体介导。

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