Young J I, Otero V, Cerdán M G, Falzone T L, Chan E C, Low M J, Rubinstein M
Instituto de Investigaciones en Ingeniería Genética y Biología Molecular, Universidad de Buenos Aires-Consejo Nacional de Investigaciones Científicas y Técnicas, 1428 Buenos Aires, Argentina.
J Neurosci. 1998 Sep 1;18(17):6631-40. doi: 10.1523/JNEUROSCI.18-17-06631.1998.
The pro-opiomelanocortin (POMC) gene is expressed in a subset of hypothalamic and hindbrain neurons and in pituitary melanotrophs and corticotrophs. POMC neurons release the potent opioid beta-endorphin and several active melanocortins that control homeostasis and feeding behavior. POMC gene expression in the CNS is believed to be controlled by distinct cis-acting regulatory sequences. To analyze the transcriptional regulation of POMC in neuronal and endocrine cells, we produced transgenic mice carrying POMC27*, a transgene containing the entire 6 kb of the POMC transcriptional unit together with 13 kb of 5' flanking regions and 8 kb of 3' flanking regions. POMC27* was tagged with a heterologous 30 bp oligonucleotide in the third exon. In situ hybridization studies showed an accurate cell-specific pattern of expression of POMC27* in the arcuate nucleus and the pituitary. Hypothalamic mRNA-positive neurons colocalized entirely with beta-endorphin immunoreactivity. No ectopic transgenic expression was detected in the brain. Deletional analyses demonstrated that neuron-specific expression of POMC transgenes required distal 5' sequences localized upstream of the pituitary-responsive proximal cis-acting elements that were identified previously. POMC27* exhibited a spatial and temporal pattern of expression throughout development that exactly paralleled endogenous POMC. RNase protection assays revealed that POMC27* expression mimicked that of POMC in different areas of the CNS and most peripheral organs with no detectable ectopic expression. Hormonal regulation of POMC27* and POMC was identical in the hypothalamus and pituitary. These results show that distal 5' sequences of the POMC gene located between -13 and -2 kb target expression into the CNS of transgenic mice in a precise neuron-specific, developmentally and hormonally regulated manner.
促阿片-黑素细胞皮质素原(POMC)基因在下丘脑和后脑神经元的一个亚群以及垂体黑素细胞和促肾上腺皮质激素细胞中表达。POMC神经元释放强效阿片类物质β-内啡肽和几种活性黑素皮质素,它们控制体内平衡和进食行为。中枢神经系统中POMC基因的表达被认为受不同的顺式作用调控序列控制。为了分析POMC在神经元和内分泌细胞中的转录调控,我们制备了携带POMC27的转基因小鼠,POMC27是一个转基因,包含整个6 kb的POMC转录单元以及13 kb的5'侧翼区域和8 kb的3'侧翼区域。POMC27在第三个外显子中用一个异源30 bp寡核苷酸进行了标记。原位杂交研究显示POMC27在弓状核和垂体中具有精确的细胞特异性表达模式。下丘脑mRNA阳性神经元与β-内啡肽免疫反应性完全共定位。在脑中未检测到异位转基因表达。缺失分析表明,POMC转基因的神经元特异性表达需要位于先前鉴定的垂体反应性近端顺式作用元件上游的远端5'序列。POMC27在整个发育过程中表现出一种时空表达模式,与内源性POMC完全平行。核糖核酸酶保护分析显示,POMC27的表达在中枢神经系统和大多数外周器官的不同区域模仿了POMC的表达,未检测到异位表达。下丘脑和垂体中POMC27*和POMC的激素调节是相同的。这些结果表明,POMC基因位于-13至-2 kb之间的远端5'序列以精确的神经元特异性、发育和激素调节方式将转基因小鼠的表达靶向中枢神经系统。