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首页> 外文期刊>Journal of neuroendocrinology >Age-associated changes in hypothalamic and pituitary neuroendocrine gene expression in the rat.
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Age-associated changes in hypothalamic and pituitary neuroendocrine gene expression in the rat.

机译:大鼠下丘脑和垂体神经内分泌基因表达的年龄相关变化。

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A cDNA membrane array displaying 1183 probes was used to detect hypothalamic and pituitary changes in gene expression accompanying ageing and age-associated pituitary macroadenomas. Four groups of male Sprague-Dawley rats (3-, 15-, 24-month-old and 24-month-old with prolactinoma) were compared in two independent hybridizations. cDNA array data were confirmed and completed by comparative reverse transcriptase-polymerase chain reaction on selected genes. The expression of 454 and 116 mRNAs was detected in hypothalamus and pituitary, respectively. Growth hormone (GH) mRNA alone represented 85% of total gene expression in the gland of young rats, and other pituitary hormone transcripts 2.8%, while melanin-concentrating hormone (MCH) mRNA, the most expressed neuropeptide transcript involved in neuroendocrine regulation, accounted for only 0.8% of total hypothalamic transcripts. The proportion of genes modified in the hypothalamus and pituitary was rather modest: 1.5% and 5.2%, respectively, for ageing per se, and 1.1% and 5.2% for age-associated macroprolactinomas. Among pituitary specific RNAs, GH mRNA expression was notably decreased with age. At the hypothalamic level, expression of genes directly involved in GH regulation, such as somatostatin and growth hormone-releasing hormone, was not altered, while neuropeptide transcripts involved in feeding behaviour [orexin/hypocretin, MCH, pro-opiomelanocortin (POMC), cocaine- and amphetamine-regulated transcript (CART)] were significantly altered. In addition, a few ubiquitous transcripts (hnRNP-K, PFKm, CCND 2, calponin and set) were differently affected in both tissues. Modifications in hypothalamic orexigenic (orexin, MCH) and anorexigenic (POMC, CART) gene expression are in keeping with an age-associated decrease in energy consumption but a higher one in the presence of macroprolactinomas.
机译:显示1183个探针的cDNA膜阵列用于检测下丘脑和垂体在基因表达中伴随衰老和与年龄相关的垂体大腺瘤的变化。在两个独立的杂交中比较了四组雄性Sprague-Dawley大鼠(3、15、24、24个月大和催乳素瘤)。通过对选定基因进行比较性逆转录聚合酶链反应,确认并完成了cDNA阵列数据。在下丘脑和垂体中分别检测到454和116 mRNA的表达。单独的生长激素(GH)mRNA占幼鼠腺中总基因表达的85%,其他垂体激素转录本占2.8%,而黑色素浓缩激素(MCH)mRNA是参与神经内分泌调节的表达最多的神经肽转录本,占仅占下丘脑总成绩单的0.8%。下丘脑和垂体中修饰的基因的比例相当适中:本身的衰老分别为1.5%和5.2%,与年龄相关的大泌乳素瘤则分别为1.1%和5.2%。在垂体特异性RNA中,GH mRNA表达随年龄显着降低。在下丘脑水平,直接影响生长激素调节的基因,例如生长抑素和生长激素释放激素的表达没有改变,而神经肽转录物参与进食行为[orexin / hypocretin,MCH,opiomelanocortin(POMC),可卡因-和苯丙胺调节的转录本(CART)]发生了显着变化。另外,在两个组织中,一些普遍存在的转录本(hnRNP-K,PFKm,CCND 2,钙蛋白和钙定型)受到不同的影响。下丘脑的食源性(orexin,MCH)和厌食性(POMC,CART)基因表达的改变与年龄相关的能量消耗下降相一致,但是在存在大泌乳素瘤的情况下,能量消耗较高。

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