首页> 美国卫生研究院文献>American Journal of Physiology - Regulatory Integrative and Comparative Physiology >Photoperiod history-dependent responses to intermediate day lengths engage hypothalamic iodothyronine deiodinase type III mRNA expression
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Photoperiod history-dependent responses to intermediate day lengths engage hypothalamic iodothyronine deiodinase type III mRNA expression

机译:光周期历史依赖于中间天的反应参与下丘脑碘甲状腺素脱碘酶III型mRNA表达

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摘要

Perihypothalamic thyroid hormone signaling features prominently in the seasonal control of reproductive physiology. Triiodothyronine (T3) signaling stimulates gonadal development, and decrements in T3 signaling are associated with gonadal regression. Type 3 iodothyronine deiodinase (DIO3) converts the prohormone thyroxine (T4) into biologically inactive 3,3′,5′-triiodothyronine, and in long-day breeding Siberian hamsters exposure to long (LD) and short (SD) photoperiods, respectively, inhibit and stimulate hypothalamic dio3 mRNA expression. Reproductive responses to intermediate-duration photoperiods (IntD) occur in a history-dependent manner; IntDs are interpreted as inhibitory only when preceded by longer photoperiods. Because dio3 expression has only been evaluated under LD or SD photoperiods, it is not known whether hypothalamic dio3 encodes absolute photoperiod duration or the reproductive interpretation of photoperiod. Male Siberian hamsters with and without a prior history of LD were exposed to IntD photoperiods, and hypothalamic dio3 mRNA expression was measured 6 wk later. Hamsters with a LD photoperiod history exhibited gonadal regression in IntD and a marked upregulation of hypothalamic dio3 expression, whereas in hamsters without prior exposure to LD, gonadal responses to IntD were absent, and dio3 expression remained low. Patterns of deiodinase expression in hamsters maintained in chronic IntD photoperiods did not appear to reflect feedback effects of gonadal status. Hypothalamic expression of dio3 does not exclusively reflect ambient photoperiod, but rather the context-dependent reproductive interpretation of photoperiod. Neuroendocrine mechanisms that compare current and prior photoperiods, which permit detection of directional changes in day length, occur either upstream, or at the level, of hypothalamic dio3 expression.
机译:下丘脑甲状腺激素信号传导在生殖生理的季节性控制中具有显着特征。 Triiodothyronine(T3)信号刺激性腺发育,并且T3信号的减少与性腺退化有关。 3型碘甲状腺素脱碘酶(DIO3)将原激素甲状腺素(T4)转化为无生物学活性的3,3',5'-三碘甲甲状腺素,并在长期繁殖的西伯利亚仓鼠中分别暴露于长(LD)和短(SD)光周期,抑制和刺激下丘脑dio3 mRNA表达。对中间持续时间的光周期(IntD)的生殖反应以历史依赖的方式发生。只有在较长的光周期之前,才将IndD解释为抑制性的。由于仅在LD或SD光周期下评估dio3的表达,因此不知道下丘脑dio3是编码绝对光周期持续时间还是光周期的生殖解释。将具有和没有LD既往史的雄性西伯利亚仓鼠暴露于IntD光周期,并在6周后测量下丘脑dio3 mRNA表达。具有LD光周期病史的仓鼠在IntD中表现出性腺退化和下丘脑dio3表达的显着上调,而在没有事先暴露于LD的仓鼠中,没有对IntD的性腺反应,而dio3表达仍然很低。慢性IntD光周期维持的仓鼠中脱碘酶表达模式似乎未反映性腺状态的反馈作用。 dio3的下丘脑表达并不仅仅反映环境光周期,而是光周期的上下文相关生殖解释。比较当前和先前光周期的神经内分泌机制,可以检测日长的方向变化,发生在下丘脑dio3表达的上游或水平。

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