Laboratory of Molecular Neuroendocrinology, Institute of Experimental Medicine, Budapest, Hungary.
Mol Cell Endocrinol. 2010 Jun 10;321(2):138-45. doi: 10.1016/j.mce.2010.02.036. Epub 2010 Mar 6.
Many signals reflecting energy balance and stress are integrated at the hypothalamic orexigenic NPY neurons. To determine transcriptional changes of the NPY gene in response to stress, we followed the time course and compared the expression of heteronuclear (hn)- and messenger (m)RNA levels by in situ hybridization histochemistry and by real time PCR in mice following insulin-induced hypoglycemia and restraint. Hypoglycemia in fasted mice resulted in a rapid increase of NPY hnRNA that peaked at 1h, declined thereafter by 2-4h after insulin injection and run parallel to that of NPY mRNA. Throughout the time course examined, NPY expressing cells in the medial basal hypothalamus remained overwhelmingly localized to the arcuate nucleus. Following restraint NPY mRNA slightly increased, however hnRNA levels decreased up to 2h, suggesting increased stability of mature NPY mRNA. These results highlight rapid changes and differential regulation of NPY expression in response to metabolic and stress challenges.
许多反映能量平衡和应激的信号在下丘脑食欲肽神经元中被整合。为了确定 NPY 基因在应激反应中的转录变化,我们通过原位杂交组织化学和实时 PCR 检测了胰岛素诱导的低血糖和束缚后小鼠 NPY 基因的时间过程和信使 (m)RNA 水平的表达。禁食小鼠的低血糖导致 NPY hnRNA 迅速增加,在胰岛素注射后 1 小时达到峰值,此后 2-4 小时下降,并与 NPY mRNA 的变化平行。在整个检测时间过程中,下丘脑内侧基底部表达 NPY 的细胞绝大多数局限于弓状核。束缚后 NPY mRNA 略有增加,然而 hnRNA 水平在 2 小时内下降,提示成熟 NPY mRNA 的稳定性增加。这些结果突出了 NPY 表达在应对代谢和应激挑战时的快速变化和差异调节。