Department of Animal and Dairy Science, University of Georgia, Athens, GA 30602-2771, USA.
Physiol Res. 2011;60(6):941-50. doi: 10.33549/physiolres.932151. Epub 2011 Oct 12.
GIP (glucose dependent insulinotrophic polypeptide), originally identified as an incretin peptide synthesized in the gut, has recently been identified, along with its receptors (GIPR), in the brain. Our objective was to investigate the role of GIP in hypothalamic gene expression of biomarkers linked to regulating energy balance and feeding behavior related neurocircuitry. Rats with lateral cerebroventricular cannulas were administered 10 μg GIP or 10 microl artificial cerebrospinal fluid (aCSF) daily for 4 days, after which whole hypothalami were collected. Real time Taqman™ RT-PCR was used to quantitatively compare the mRNA expression levels of a set of genes in the hypothalamus. Administration of GIP resulted in up-regulation of hypothalamic mRNA levels of AVP (46.9±4.5 %), CART (25.9±2.7 %), CREB1 (38.5±4.5 %), GABRD (67.1±11 %), JAK2 (22.1±3.6 %), MAPK1 (33.8±7.8 %), NPY (25.3±5.3 %), OXT (49.1±5.1 %), STAT3 (21.6±3.8 %), and TH (33.9±8.5 %). In a second experiment the same set of genes was evaluated in GIPR(-/-) and GIPR(+/?) mice to determine the effect of lack of GIP stimulation on gene expression. In GIPR(-/-) mice expressions of the following genes were down-regulated: AVP (27.1±7.5 %), CART (28.3±3.7 %), OXT (25.2±5.8 %), PTGES (23.9±4.5 %), and STAT3 (8.8±2.3 %). These results suggest that AVP, CART, OXT and STAT3 may be involved in energy balance-related hypothalamic circuits affected by GIP.
GIP(葡萄糖依赖性胰岛素促分泌多肽)最初被鉴定为在肠道中合成的肠促胰岛素肽,最近在大脑中与 GIPR(GIP 受体)一起被发现。我们的目的是研究 GIP 在调节能量平衡和与摄食行为相关的神经回路的下丘脑基因表达中的作用。具有侧脑室套管的大鼠每天接受 10μg GIP 或 10 微升人工脑脊液(aCSF)治疗 4 天,之后收集整个下丘脑。实时 Taqman™ RT-PCR 用于定量比较下丘脑一组基因的 mRNA 表达水平。GIP 的给药导致下丘脑 AVP(46.9±4.5%)、CART(25.9±2.7%)、CREB1(38.5±4.5%)、GABRD(67.1±11%)、JAK2(22.1±3.6%)、MAPK1(33.8±7.8%)、NPY(25.3±5.3%)、OXT(49.1±5.1%)、STAT3(21.6±3.8%)和 TH(33.9±8.5%)的 mRNA 水平上调。在第二项实验中,评估了相同的基因在 GIPR(-/-)和 GIPR(+/?)小鼠中,以确定缺乏 GIP 刺激对基因表达的影响。在 GIPR(-/-)小鼠中,以下基因的表达下调:AVP(27.1±7.5%)、CART(28.3±3.7%)、OXT(25.2±5.8%)、PTGES(23.9±4.5%)和 STAT3(8.8±2.3%)。这些结果表明,AVP、CART、OXT 和 STAT3 可能参与了受 GIP 影响的与能量平衡相关的下丘脑回路。