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Acute Downregulation of Type II and Type III Iodothyronine Deiodinases by Photoperiod in Peripubertal Male and Female Siberian Hamsters

机译:光周期在男性和女性西伯利亚仓鼠的II型和III型碘甲状腺素脱碘酶的急性下调。

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摘要

Availability of the thyroid hormone triiodothyronine (T3) in the mediobasal hypothalamus plays a central role in seasonal reproductive responses to photoperiod. Across many vertebrates, Type 2 iodothyronine deiodinase (DIO2) is elevated under reproductively stimulatory long days (LD) and synthesizes the conversion of thyroxine to T3; type 3 iodothyronine deiodinase (DIO3) reduces T3 production and signaling, and is upregulated under reproductively-inhibitory short days (SD). In Siberian hamsters, regulation of hypothalamic T3 is dominated by dio3 expression, whereas dio2 expression is less-consistently affected by photoperiod. In adult hamsters, changes in deiodinase mRNA expression typically require several weeks to manifest, but it is not known whether or how quickly these mechanisms are engaged during the rapid responses to photoperiod observed in young, peri-pubertal hamsters. This experiment tested the hypotheses that (1) deiodinase responses to photoperiod are accelerated in juvenile hamsters and (2) photoperiodic downregulation of deiodinase expression occurs more rapidly than upregulation. Hypothalamic dio2 and dio3 mRNA expression was quantified in male and female Siberian hamsters that were weaned on postnatal day 18 (PND 18) into SD or remained in their natal LD, and on PND 31 were exposed to a single long or short day. In SD males and females, a single long day inhibited dio3 mRNA expression, but did not increase dio2 mRNA. In LD males, a single short day rapidly inhibited dio2 mRNA expression, but did not stimulate expression of dio3 mRNA. Downregulation of dio2 and dio3 mRNAs precedes gonadotrophin responses to day length. Rapid photoperiodic inhibition of deiodinase mRNAs may initiate changes in thyroid hormone signaling in advance of longer-term, melatonin-dependent, responses.
机译:甲状旁腺下丘脑中甲状腺激素三碘甲状腺素(T3)的可用性在对光周期的季节性生殖反应中起着核心作用。在许多脊椎动物中,2型碘甲状腺素脱碘酶(DIO2)在繁殖刺激的长日(LD)下升高,并合成了甲状腺素向T3的转化。 3型碘甲状腺素脱碘酶(DIO3)减少了T3的产生和信号传导,并在生殖抑制短日(SD)下被上调。在西伯利亚仓鼠中,下丘脑T3的调控主要受dio3表达的影响,而dio2表达受光周期的影响较小。在成年仓鼠中,脱碘酶的mRNA表达变化通常需要数周才能显现出来,但尚不清楚这些机制在幼小青春期仓鼠对光周期的快速响应过程中是否起作用或作用多快。该实验检验了以下假设:(1)在幼年仓鼠中,碘化酶对光周期的反应被加速,以及(2)碘化酶表达的光周期下调比上调发生得更快。在雄性和雌性西伯利亚仓鼠中定量下丘脑dio2和dio3 mRNA的表达,这些仓鼠在出生后第18天(PND 18)断奶或进入其出生后LD,PND 31暴露于一天或一整天。在SD雄性和雌性中,单日漫长的一天抑制了dio3 mRNA的表达,但没有增加dio2 mRNA的表达。在LD男性中,短短一整天迅速抑制dio2 mRNA的表达,但没有刺激dio3 mRNA的表达。 dio2和dio3 mRNA的下调在促性腺激素对天长的响应之前。快速的光周期抑制脱碘酶的mRNA可能会在长期的褪黑激素依赖性反应之前启动甲状腺激素信号的变化。

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