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Hypothyroidism alters the expression of prostaglandin D2 synthase/β trace in specific areas of the developing rat brain

机译:甲状腺功能减退症会改变发育中的大鼠大脑特定区域中前列腺素D2合酶/β痕迹的表达

摘要

Lipocalin-type prostaglandin D2 synthase is the enzyme responsible for the synthesis of prostaglandin D2, a major prostaglandin in the central nervous system. We analysed the effects of thyroid hormone deprivation on prostaglandin D2 synthase gene expression in the developing rat brain. By in situ hybridization, the strongest prostaglandin D2 synthase mRNA signal was detected in the leptomeninges and choroid plexus. The signal was greatly reduced in the cerebellar interlaminar meninges of hypothyroid rats aged 15 and 25 days. Immunohistochemical studies defined changes in the location of the prostaglandin D2 synthase protein. In control but not in hypothyroid animals, Cajal-Retzius neurons of cortical layer I, and pyramidal cortical plate neurons were intensely stained on postnatal day 5. Conversely, prostaglandin D2 synthase protein levels were higher in neurons of the CA1 and CA3 regions and the dentate gyrus of the hippocampus of hypothyroid animals on postnatal days 5, 15 and 25, and also in subplate neurons on postnatal days 15 and 25. In agreement with the in situ hybridization and northern blotting data, the major difference was found in the cerebellar interlaminar meninges of hypothyroid animals, where the protein was clearly down-regulated on postnatal days 15 and 25. These results show that hypothyroidism causes both age- and region-specific alterations in the expression and location of the prostaglandin D2 synthase during postnatal brain development, probably reflecting a cell-specific regulatory effect of thyroid hormone on the prostaglandin D2 synthase.
机译:脂蛋白素型前列腺素D2合酶是负责前列腺素D2(中枢神经系统中主要的前列腺素)合成的酶。我们分析了甲状腺激素剥夺对发育中大鼠脑中前列腺素D2合酶基因表达的影响。通过原位杂交,在软脑膜和脉络丛中检测到最强的前列腺素D2合酶mRNA信号。在15和25天的甲状腺功能减退大鼠的小脑层间脑膜中,该信号大大降低。免疫组织化学研究确定了前列腺素D2合酶蛋白位置的变化。在对照组中,但在甲状腺功能不佳的动物中,皮层I的Cajal-Retzius神经元和锥体皮质板神经元在出生后第5天被强烈染色。相反,CA1和CA3区和齿状神经元中前列腺素D2合酶的蛋白水平较高。甲状腺功能减退症动物的海马回在出生后第5、15和25天以及在出生后第15和25天在亚板神经元中。与原位杂交和Northern blotting数据一致,在小脑层间脑膜中发现了主要差异甲状腺功能低下的动物,其蛋白质在出生后第15天和第25天明显下调。这些结果表明,甲状腺功能低下会导致出生后大脑发育过程中前列腺素D2合酶的表达和位置发生年龄和区域特异性变化,这可能反映了甲状腺激素对前列腺素D2合酶的细胞特异性调节作用。

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