Barrett P, Morris M A, Moar K M, Mercer J G, Davidson J A, Findlay P A, Adam C L, Morgan P J
Molecular Neuroendocrinology Group, Aberdeen Centre for Energy Regulation and Obesity, Rowett Research Institute, Bucksburn, Aberdeen AB21 9SB, UK.
J Neuroendocrinol. 2001 Apr;13(4):347-52. doi: 10.1046/j.1365-2826.2001.00634.x.
The cocaine-amphetamine regulated transcript (CART) encodes for a protein which has an important role in the regulation of appetite and body weight. To date, no details of the molecular events and signal transduction pathways which regulate this gene are available. We report the identification of CART gene expression in the GH3 pituitary cell line. We have used activators of the cAMP or protein kinase C (PKC) signal transduction pathways to show that, in GH3 cells, CART is transcriptionally up-regulated by activators of the cAMP signal transduction pathway. We also identify CART gene expression in ovine pars tuberalis (PT) tissue and primary cell cultures. In PT cells in contrast to GH3 cells, CART gene expression is upregulated by activators of the PKC signal transduction pathway. Cultured cells have provided a valuable resource for the detailed analysis of specific regulatory mechanisms underlying transcriptional or translational regulation of genes, signal transduction events and many other cellular processes. GH3 and PT cells may therefore provide a resource for the further detailed molecular analysis of the events regulating CART gene expression and processing.
可卡因 - 苯丙胺调节转录物(CART)编码一种在食欲和体重调节中起重要作用的蛋白质。迄今为止,尚无调节该基因的分子事件和信号转导途径的详细信息。我们报告了在GH3垂体细胞系中CART基因表达的鉴定。我们使用了cAMP或蛋白激酶C(PKC)信号转导途径的激活剂来表明,在GH3细胞中,CART被cAMP信号转导途径的激活剂转录上调。我们还鉴定了绵羊结节部(PT)组织和原代细胞培养物中的CART基因表达。与GH3细胞相反,在PT细胞中,CART基因表达被PKC信号转导途径的激活剂上调。培养细胞为详细分析基因转录或翻译调控、信号转导事件及许多其他细胞过程背后的特定调节机制提供了宝贵资源。因此,GH3和PT细胞可能为进一步详细分子分析调节CART基因表达和加工的事件提供资源。