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首页> 外文期刊>Molecular and Cellular Endocrinology >Abundant expression of the membrane-anchored protease-regulator RECK in the anterior pituitary gland and its implication in the growth hormone/insulin-like growth factor 1 axis in mice
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Abundant expression of the membrane-anchored protease-regulator RECK in the anterior pituitary gland and its implication in the growth hormone/insulin-like growth factor 1 axis in mice

机译:膜固定蛋白酶调节剂在前脑前腺体中的丰富表达及其在小鼠生长激素/胰岛素样生长因子1轴上的含义

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摘要

The tumor suppressor gene Reversion-inducing cysteine-rich protein with Kazal motifs (Reck) encodes a membrane-anchored protease regulator expressed in multiple tissues in mouse embryos and is essential for embryonic development. In postnatal mice, however, physiological roles for the RECK protein remain unclear. We found in this study that Reck is abundantly expressed in growth hormone (GH)-producing cells (somatotrophs) in the anterior pituitary gland (AP). We also found that two types of viable Reck mutant mice, one with reduced RECK expression (Hypo mice) and the other with induced Reck deficiency from 10 days after birth (iKO mice treated with tamoxifen), exhibit common phenotypes including decreases in body size and plasma levels of insulin-like growth factor-1 (IGF1). To gain insights into the function of RECK in the AP, we characterized several somatotroph-associated molecules in the AP of these mice. Immunoreactivity of GH was greatly reduced in tamoxifen-treated iKO mice; in these mice, two membrane receptors involved in the stimulation of GH secretion [growth hormone secretagogue receptor (GHSR) and growth hormone releasing hormone receptor (GHRHR)] were decreased, however, their mRNAs were increased. Decrease in GHSR immunoreactivity and concomitant increase in its mRNA were also found in the other mutant line, Hypo. Furthermore, reduced immunoreactivity of growth hormone receptor (GHR) and concomitant increase in its mRNA was also found in the liver of Hypo mice. These results raise the possibility that RECK supports proper functioning of the GH/IGF1 axis in mice, thereby affecting their growth and metabolism.
机译:肿瘤抑制基因致致富含半胱氨酸的富含半胱氨酸的蛋白质(RECK)编码了在小鼠胚胎的多个组织中表达的膜锚定蛋白酶调节剂,对于胚胎发育至关重要。然而,在后期小鼠中,RECK蛋白的生理作用仍然不清楚。我们在本研究中发现,RECK在前脑垂体(AP)中的生长激素(GH) - 发产细胞(Somatotrophs)中大量表达。我们还发现两种类型的可行RECK突变小鼠,一个具有降低的RECK表达(Hypo小鼠)和另一种诱导的RECK缺乏从出生后10天(用Tamoxifen处理的IKO小鼠),表现出常见表型,包括体积减少胰岛素样生长因子-1(IGF1)的血浆水平。为了进入AP中RECK功能的洞察,我们在这些小鼠的AP中表征了几个生长学相关分子。 Tamoxifen治疗的IKO小鼠中GH的免疫反应性大大降低;在这些小鼠中,涉及GH分泌刺激的两个膜受体[生长激素分泌件受体(GHSR)和生长激素释放激素受体(GHRHR)],然而,它们的MRNA增加。在其他突变线上,也发现了GHSR免疫反应性的降低,并且其mRNA的伴随增加了突变线。此外,在肝脏的肝脏中也发现了生长激素受体(GHR)的免疫反应性和其mRNA的伴随增加。这些结果提高了RECK支持小鼠中GH / IGF1轴的正常功能的可能性,从而影响其生长和新陈代谢。

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