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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Progesterone upregulates calcitonin gene-related peptide and adrenomedullin receptor components and cyclic adenosine 3 ' 5 '-monophosphate generation in eker rat uterine smooth muscle cell line
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Progesterone upregulates calcitonin gene-related peptide and adrenomedullin receptor components and cyclic adenosine 3 ' 5 '-monophosphate generation in eker rat uterine smooth muscle cell line

机译:孕酮上调降钙素基因相关肽和肾上腺髓质素受体组成及环腺苷3'5'-单磷酸盐在子宫大鼠子宫平滑肌细胞系中的生成

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Calcitonin gene-related peptide (CGRP) and adrenomedullin (AM), two potent smooth-muscle relaxants, have been shown to cause uterine relaxation. Both CGRP- and AM-binding sites in the uterus increase during pregnancy and decrease at labor and postpartum. These changes in binding sites appear to be related to the changes in calcitonin receptor-like receptor (CRLR), receptor activity-modified protein 1 (RAMP(1)), RAMP(2), and RAMP(3) mRNA levels. It is not clear, however, whether the changes in the receptor components occur in the myometrial cells and whether the steroid hormones can directly alter these receptor components in the muscle cells. in addition, the mechanism of CGRP and AM signaling in the rat myometrium is not well understood. Therefore, we examined the mRNA expression of CGRP- and AM-receptor components, G protein Galphas, CGRP, and AM stimulation of cAMP and cGMP, and the effects of progesterone on these parameters in the Eker rat uterine myometrial smooth-muscle cell line (ELT3). ELT3 cells expressed CGRP- and AM-receptor components CRLR, RAMP(1), RAMP(2), and RAMP(3). Expression of CRLR and RAMP, mRNA increased with progesterone treatment and decreased with estradiol-17beta treatment. However, RAMP, and RAMP3 mRNA expressions were unaltered by both progesterone and estradiol. Progesterone increased (P < 0.05) Gets expression and augmented CGRP- and AM-induced increases in cAMP levels. In uterine smooth-muscle cells, the antagonist to Gas protein NF449 decreased basal as well as CGRP- and AM-stimulated cAMP levels. None of the cell treatments affected cyclic GMP production. Our results suggest that the progesterone-stimulated increases in CGRP and AM receptors, Galphas protein levels, and cAMP generation in the myometrial cells may be responsible for increased uterine relaxation sensitivity to CGRP and AM during pregnancy.
机译:降钙素基因相关肽(CGRP)和肾上腺髓质素(AM)是两种有效的平滑肌松弛剂,已显示可引起子宫松弛。子宫中的CGRP和AM结合位点在怀孕期间增加,而在分娩和产后减少。这些结合位点的变化似乎与降钙素受体样受体(CRLR),受体活性修饰蛋白1(RAMP(1)),RAMP(2)和RAMP(3)mRNA水平的变化有关。然而,尚不清楚在子宫肌层细胞中是否发生受体成分的变化以及类固醇激素是否可以直接改变肌细胞中的这些受体成分。此外,对大鼠子宫肌层中CGRP和AM信号转导的机制尚不十分了解。因此,我们检查了Eker大鼠子宫肌层平滑肌细胞系中CGRP和AM受体组分的mRNA表达,G蛋白Galphas,CGRP和AM对cAMP和cGMP的刺激以及孕酮对这些参数的影响( ELT3)。 ELT3细胞表达CGRP和AM受体成分CRLR,RAMP(1),RAMP(2)和RAMP(3)。 CRLR和RAMP,mRNA的表达随孕酮处理而增加,而随雌二醇17beta处理而降低。但是,黄体酮和雌二醇均未改变RAMP和RAMP3 mRNA的表达。孕酮升高(P <0.05)获得表达,CGRP和AM诱导的cAMP水平升高。在子宫平滑肌细胞中,气体蛋白NF449的拮抗剂降低了基础以及CGRP和AM刺激的cAMP水平。没有一种细胞处理会影响循环GMP的产生。我们的结果表明,孕激素刺激子宫肌层细胞中孕激素刺激的CGRP和AM受体,Galphas蛋白水平增加以及cAMP生成可能与子宫松弛对CGRP和AM的敏感性增加有关。

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