Graham Gemma, Sharp Peter J, Li Qiushi, Wilson Peter W, Talbot Richard T, Downing Alison, Boswell Timothy
Division of Genetics and Genomics, The Roslin Institute and Royal (Dick) School of Veterinary Studies, University of Edinburgh, Roslin, Midlothian EH25 9PS, Scotland, UK.
Brain Res Bull. 2009 May 29;79(3-4):201-7. doi: 10.1016/j.brainresbull.2009.01.010. Epub 2009 Jan 31.
In order to further advance the understanding of genes involved in avian photoperiodic signaling, a chicken hypothalamic cDNA microarray was made to identify changes in gene expression in the whole hypothalamus of juvenile male domestic chickens after 4 days' photostimulation. The most robust change was a depression in heat shock protein 90B1 (HSP90B1) expression. This observation was confirmed using quantitative PCR, and it was subsequently demonstrated that the depression in HSP90B1 expression first occurs in the anterior hypothalamus after 1 day's photostimulation, and was also depressed in the anterior and basal hypothalamus after 4 days' photostimulation. Four days after an intravenous injection of thyroxine (T4), an avian photomimetic, in short day birds, HSP90B1 expression was depressed in the anterior, but not in the basal hypothalamus. Depressed HSP901 expression after photostimulation or T4 treatment was associated with increased GnRH-I mRNA and plasma LH. HSP90B1 is abundant throughout the brain where it occurs in glial cells, and is involved in regulating white matter plasticity. It is suggested that photoperiodically depressed hypothalamic HSP90B1 may affect glial function in photoperiodic signaling pathways in the neuroendocrine system. This is the first report of a thyroid hormone-responsive gene involved in photoperiodic signaling.
为了进一步深入了解参与鸟类光周期信号传导的基因,制作了鸡下丘脑cDNA微阵列,以鉴定幼年雄性家鸡在4天光刺激后整个下丘脑基因表达的变化。最显著的变化是热休克蛋白90B1(HSP90B1)表达的降低。使用定量PCR证实了这一观察结果,随后证明HSP90B1表达的降低在光刺激1天后首先出现在下丘脑前部,在光刺激4天后下丘脑前部和基部也出现降低。在短日照鸟类静脉注射甲状腺素(T4,一种鸟类光模拟物)4天后,HSP90B1表达在下丘脑前部降低,但在基部未降低。光刺激或T4处理后HSP901表达降低与GnRH-I mRNA和血浆LH增加有关。HSP90B1在整个大脑中丰富,存在于神经胶质细胞中,并参与调节白质可塑性。提示光周期诱导的下丘脑HSP90B1降低可能影响神经内分泌系统光周期信号通路中的神经胶质功能。这是关于参与光周期信号传导的甲状腺激素反应基因的首次报道。