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Downregulation of Deiodinase 3 is the earliest event in photoperiodic and photorefractory activation of the gonadotropic axis in seasonal hamsters

机译:Deiodinase 3的下调是季节性仓鼠性腺轴的光周期和光难治性激活中的最早事件

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摘要

In seasonal rodents, reproduction is activated by a long photoperiod. Furthermore, maintaining an inhibitory short photoperiod for over 20 weeks triggers a spontaneous reactivation of the gonadotropic axis called photorefractoriness. Photoactivation is proposed to involve melatonin, hypothalamic thyroid hormones (TH) and (Arg) (Phe)-amide peptides. The mechanisms involved in photorefractoriness are so far unknown. We analyzed the dynamic changes in long photoperiod- and photorefractory-induced activation of reproduction in both Syrian and Djungarian hamsters to validate the current model of photoactivation and to uncover the mechanisms involved in photorefractoriness. We detected a conserved early inhibition of expression of the TH catabolizing enzyme deiodinase 3 (Dio3) in tanycytes, associated with a late decrease of the TH transporter MCT8. This suggests that an early peak of hypothalamic TH may be involved in both photoinduced and photorefractory reactivation. In photoactivation, Dio3 downregulation is followed by an upregulation of Dio2, which is not observed in photorefraction. The upregulation of (Arg) (Phe)-amides occurs several weeks after the initial Dio3 inhibition. In conclusion, we uncovered a so far unreported early inhibition of Dio3. This early downregulation of Dio3 is reinforced by an upregulation of Dio2 in photoactivated hamsters. In photorefractoriness, the Dio3 downregulation might be sufficient to reactivate the gonadotropic axis.
机译:在季节性啮齿动物中,长时间的光周期会激活繁殖。此外,保持抑制性短光周期超过20周会触发称为光折光性的促性腺轴的自发激活。提出光激活涉及褪黑激素,下丘脑甲状腺激素(TH)和(Arg)(Phe)-酰胺肽。迄今为止,涉及光致折光性的机制尚不清楚。我们分析了长时间的光周期和光致难治性诱导叙利亚和少女仓鼠繁殖的激活的动态变化,以验证当前的光激活模型并揭示参与光致顽固性的机制。我们检测到保守的早期抑制tanycytes中的TH分解酶脱碘酶3(Dio3)的表达,与TH转运蛋白MCT8的减少有关。这表明下丘脑TH的早期高峰可能与光诱导和光致难治性激活有关。在光活化中,Dio3下调后是Dio2上调,这在光折射中没有观察到。 (Arg)(Phe)-酰胺的上调发生在最初的Dio3抑制后几周。总之,我们发现了迄今为止尚未报道的Dio3早期抑制作用。 Dio3的这种早期下调通过光活化仓鼠中Dio2的上调得到加强。在耐光性中,Dio3下调可能足以重新激活促性腺轴。

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