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首页> 外文期刊>Molecular Neurobiology >Developmental Hypothyroxinemia Caused by Mild Iodine Deficiency Leads to HFS-Induced LTD in Rat Hippocampal CA1 Region: Involvement of AMPA Receptor
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Developmental Hypothyroxinemia Caused by Mild Iodine Deficiency Leads to HFS-Induced LTD in Rat Hippocampal CA1 Region: Involvement of AMPA Receptor

机译:轻度碘缺乏引起的发育低甲状腺素血症导致大鼠海马CA1区HFS诱导的LTD:AMPA受体的参与

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Hypothyroidism induced by severe iodine deficiency (ID) during developmental period seriously damages the central nervous system function. In addition to developmental hypothyroidism induced by severe ID, developmental hypothyroxinemia induced by mild ID is potentially damaging for neurodevelopment and learning and memory in children. Wistar rats were treated with iodine-deficient diet or methimazole (MMZ) during pregnancy and lactation to induce developmental hypothyroxinemia or hypothyroidism in the present study. Pups were weaned on postnatal day (PN) 21 and used for electrophysiological recordings on PN80. It is generally accepted that long-term depression (LTD) is induced at low-frequency stimulation (LFS) in hippocampal CA1 region. Surprisingly, we observed developmental hypothyroxinemia as well as developmental hypothyroidism led to high-frequency stimulation (HFS)-induced LTD in hippocampal CA1 region. The abnormal HFS-induced LTD suggests not only developmental hypothyroidism but also developmental hypothyroxinemia impairs learning and memory. To explore the mechanisms responsible for the HFS-induced LTD, the phosphorylation status of alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid receptors (AMPARs) was investigated. The results showed that developmental hypothyroxinemia as well as developmental hypothyroidism decreased the phosphorylation of AMPAR subunit glutamate receptor 1 (GluR1) at serine 831 and serine 845 in hippocampal CA1 region. Neither developmental hypothyroxinemia nor developmental hypothyroidism altered the phosphorylation of AMPAR subunit glutamate receptor 2 (GluR2) at serine 880. Increased levels of protein phosphatase-1 (PP1) were also observed in hippocampal CA1 regions of pups subjected to developmental hypothyroxinemia or hypothyroidism. Taken together, our results suggest that the increased levels of PP1 caused by developmental hypothyroxinemia or hypothyroidism may account for the dephosphorylation of GluR1 at serine 831 and serine 845, which may contribute to HFS-induced LTD in hippocampal CA1 region.
机译:发育期严重缺碘引起的甲状腺功能减退严重损害中枢神经系统功能。除了严重ID引起的发育性甲状腺功能减退外,轻度ID引起的发育性甲状腺功能低下血症还可能损害儿童的神经发育和学习记忆。在本研究中,Wistar大鼠在妊娠和哺乳期间接受了缺碘饮食或甲巯咪唑(MMZ)的治疗,以诱导发育性甲状腺功能低下血症或甲状腺功能减退。幼仔在出生后第21天(PN)断奶,并在PN80上用于电生理记录。公认的是,在海马CA1区的低频刺激(LFS)下会诱发长期抑郁症(LTD)。出人意料的是,我们观察到发育性甲状腺功能低下血症以及发育性甲状腺功能低下导致海马CA1区高频刺激(HFS)诱导的LTD。异常的HFS诱导的LTD不仅提示发展性甲状腺功能减退症,而且发展性甲状腺素低血症会损害学习和记忆能力。为了探索导致HFS诱导LTD的机制,研究了α-氨基-3-羟基-5-甲基-4-异恶唑丙酸受体(AMPAR)的磷酸化状态。结果表明,发育性甲状腺功能低下症和发育性甲状腺功能减退症降低了海马CA1区丝氨酸831和845丝氨酸的AMPAR亚基谷氨酸受体1(GluR1)的磷酸化。发育性甲状腺功能低下症和发育性甲状腺功能低下均未改变880丝氨酸时AMPAR亚基谷氨酸受体2(GluR2)的磷酸化。在发育性甲状腺功能低下症或甲状腺功能低下的幼犬海马CA1区,蛋白磷酸酶-1(PP1)的水平也升高。两者合计,我们的结果表明,由发育低甲状腺素血症或甲状腺功能低下引起的PP1水平升高,可能解释了丝氨酸831和丝氨酸845处GluR1的去磷酸化,这可能是由HFS诱导的海马CA1区LTD引起的。

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