Engel L, Gupta B B P, Lorenzkowski V, Heinrich B, Schwerdtle I, Gerhold S, Holthues H, Vollrath L, Spessert R
Department of Anatomy, Johannes Gutenberg University, Saarstrasse 19-21, D-55099 Mainz, Germany.
Neuroscience. 2005;132(2):511-8. doi: 10.1016/j.neuroscience.2004.12.014.
As the physiological role of fos-related antigen-2 (Fra-2) is largely unknown and since the pineal plays an important role in the photoperiodic control of the body, we have tested the hypothesis that Fra-2 expression is photoperiod-dependent and may be involved in imprinting photoperiod on the pineal gland and the body as a whole. To this end, we have investigated Fra-2 mRNA expression and Fra-2 protein expression under various light/dark (LD) cycles. A clear nocturnal increase occurs for both monitored parameters under all photoperiodic conditions studied. The level of Fra-2 protein expression clearly depends on photoperiod, because the amount of protein at dark onset and during the night negatively correlates with the length of the photoperiod. Further, high-phosphorylated Fra-2 isoforms are abundant under all photoperiods tested, with the exception of LD 20:4. Because Fra-2 phosphorylation depends on cGMP, a depressed cGMP response to adrenergic stimulation under LD 20:4 appears to explain this finding. We conclude that photoperiod is imprinted on Fra-2 in terms of both protein amount and protein phosphorylation in the rat pineal gland. This imprinting becomes fully manifest after about 7 days only, suggesting that a number of altered photoperiodic cycles are required for pineal Fra-2 to "learn" that the photoperiod has changed. Reportedly, Fra-2 limits expression of the enzyme iodothyronine deiodinase type II, which catalyzes the intracellular deiodination of thyroxine prohormone to the active 3,3',5-triiodothyronine. We have found that the extent of Fra-2 expression inversely correlates with the dII gene response to cAMP; hence the photoperiodic regulation of Fra-2 may affect the body by changing pineal thyroid hormone metabolism.
由于Fos相关抗原2(Fra-2)的生理作用在很大程度上尚不清楚,并且鉴于松果体在机体的光周期控制中发挥重要作用,我们检验了以下假设:Fra-2的表达依赖于光周期,并且可能参与将光周期印记于松果体及整个机体。为此,我们研究了在各种光/暗(LD)周期下Fra-2 mRNA表达和Fra-2蛋白表达情况。在所研究的所有光周期条件下,两个监测参数均出现明显的夜间增加。Fra-2蛋白表达水平明显依赖于光周期,因为黑暗开始时及夜间的蛋白量与光周期长度呈负相关。此外,除了LD 20:4之外,在所有测试的光周期下高磷酸化的Fra-2异构体都很丰富。由于Fra-2磷酸化依赖于cGMP,在LD 20:4下对肾上腺素能刺激的cGMP反应降低似乎可以解释这一发现。我们得出结论,在大鼠松果体中,就蛋白量和蛋白磷酸化而言,光周期被印记于Fra-2上。这种印记仅在大约7天后才完全显现,这表明松果体Fra-2需要多个改变的光周期才能“得知”光周期已经改变。据报道,Fra-2限制II型碘甲状腺原氨酸脱碘酶的表达,该酶催化甲状腺素前体在细胞内脱碘生成活性3,3',5-三碘甲状腺原氨酸。我们发现Fra-2表达程度与dII基因对cAMP的反应呈负相关;因此,Fra-2的光周期调节可能通过改变松果体甲状腺激素代谢来影响机体。