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首页> 外文期刊>American Journal of Physiology >Effects of a high-glucose environment on the pituitary growth hormone-releasing hormone receptor: type 1 diabetes compared with in vitro glucotoxicity
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Effects of a high-glucose environment on the pituitary growth hormone-releasing hormone receptor: type 1 diabetes compared with in vitro glucotoxicity

机译:高葡萄糖环境对垂体生长激素释放激素受体的影响:1型糖尿病与体外葡萄酸毒性相比

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摘要

The present study investigated the effects of diabetes and high glucose on GHRH receptor (GHRH-R) mRNA and protein levels in the pituitary of diabetic rats 2, 21, and 60 days post-streptozotocin (post-STZ) administration. Two days post-STZ, the 2.5-kb GHRH-R mRNA transcript was increased. Twenty-one days post-STZ, both the 2.5- and 4-kb transcripts and a 72-kDa ~(125)I-GHRH-GHRH-R complex were elevated. Sixty days post-STZ, the 4-kb transcript remained increased and the 45-kDa ~(125)I-GHRH-GHRH-R complex (functional receptor) was decreased. Hypothalamic GHRH mRNA and serum total IGF-I levels were reduced at all three time points. To better understand the role of high glucose on GHRH-R regulation, time-course effects of 33 compared with 6 mM D-glucose (DG) were examined in cultured anterior pituitary cells from 2-mo-old healthy rats. Membrane lipoperoxidation was present in 33 mM DG, and GHRH-R mRNA levels were diminished after 24 h, Fluo-GHRH internalization was marginal after 16-24 h, and GHRH-inducedcAMP levels were decreased after 24 and 48 h. Altogether, these results indicate that the increase of the 2.5-kb GHRH-R mRNA transcript in vivo could be a consequence of a decrease of hypothalamic GHRH mRNA levels in STZ rats. Since it does not affect primarily functional GHRH-R levels, the initial diminution of circulating IGF-I levels could result from a decreased GHRH-R stimulation by GHRH. Thus, the effect of glucotoxicity would be related to a decrease of functional GHRH-R protein, as observed in rats 60 days post-STZ and in cultured pituitary cells from healthy rats exposed to a high-glucose environment.
机译:本研究研究了糖尿病和高葡萄糖对糖尿病大鼠垂体(STZ)给药后糖尿病大鼠垂体垂体(GhRH-R)mRNA和蛋白质水平的影响(后60天。 STZ后两天,2.5 kB GHRH-R mRNA转录物增加。 24天后,2.5-和4-κB转录物和72 kda〜(125)I-GhRH-GhRH-R复合物升高。 STZ后60天,4-KB转录物保持较高,45-KDA〜(125)I-GHRH-GHRH-R复合体(功能受体)降低。在所有三个时间点都减少了下丘脑GhRH mRNA和血清总IGF-I水平。为了更好地了解高葡萄糖对GHRH-R调节的作用,33与6mm D-葡萄糖(DG)相比的时间过程效应于来自2 -Mo血健康大鼠的培养前垂体细胞中。在33mM DG中存在膜脂蛋白氧化,24小时后,GHRH-R mRNA水平降低,16-24小时后氟-GHRH内化在边缘后,24至48小时后降低GHRH诱导水平。总的来说,这些结果表明体内2.5-kB GhRH-R mRNA转录物的增加可能是STZ大鼠下丘脑GhRH mRNA水平降低的结果。由于不会影响主要功能性的GHRH-R水平,因此循环IGF-I水平的初始减少可能是由GHRH的降低的GHRH-R刺激而导致。因此,葡萄酸毒性的影响将与功能性GHRH-R蛋白的减少有关,如在STZ 60天的大鼠和来自暴露于高葡萄糖环境的健康大鼠的培养垂体细胞中所观察到的。

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