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The regulation of proenkephalin gene expression in non-neuronal tissues.

机译:非脑神经组织中前脑啡肽基因表达的调节。

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The regulation of non-neuronal proenkephalin gene expression was examined in a variety of different in vivo and in vitro model systems to obtain a better understanding of the mechanisms involved and to compare with the regulation of expression in neuronal systems.;Proenkephalin gene expression is high in the proliferative endometria but undetectable in the secretory endometria. Detectable levels of proenkephalin gene expression were not observed in the endometria of ovariectomized macaques but were observed in estradiol-treated ovariectomized macaques. Proenkephalin gene expression was not observed in either the endometria of ovariectomized macaques treated with progesterone and estradiol or from decidual tissue during pregnancy. These observations suggest that expression of the proenkephalin gene in the non-human primate endometrium correlates with the proliferative state and is under regulation by steroid hormones.;Neurotransmitter analogs and analogs of their putative second messengers stimulate proenkephalin gene expression in primary cultures of neonatal rat cerebral type-1 astrocytes by stimulating gene transcription, synthesis and secretion of proenkephalin-derived peptides. Additionally, tumor necrosis factor-;The proenkephalin gene expression in primary cultures of neonatal rat cardiomyocytes is increased by neuropeptides, neurotransmitter analogs and analogs of their putative second messengers. Cardiac proenkephalin gene expression results in transcripts that are associated with polyribosomes and the synthesis and secretion of larger forms of the proenkephalin-derived peptides. The developmental programs of proenkephalin gene expression in skeletal and cardiac muscles appear to be dramatically divergent where during neonatal development gene expression decreases dramatically and increases respectively. Skeletal muscle-derived myoblasts induced to differentiate in vitro demonstrate decreased proenkephalin gene expression with differentiation.;The non-neuronal expression of larger proenkephalin-derived peptides and the correlation between elevated proenkephalin gene expression with tissues that are either undifferentiated or possess the potential for rapid proliferation suggests a putative role for these larger peptides in development.
机译:在各种不同的体内和体外模型系统中检查了非神经元前脑啡肽基因表达的调控,以更好地了解所涉及的机制,并与神经元系统中的表达调控进行比较。在增生性子宫内膜中,但在分泌性子宫内膜中不可检测。在去卵巢猕猴的子宫内膜中未观察到可检测到的前脑啡肽基因表达水平,但在经雌二醇处理的去卵巢猕猴中观察到了水平。在孕期用孕酮和雌二醇处理过的去卵巢猕猴的子宫内膜或在蜕膜组织中均未观察到前脑啡肽基因的表达。这些观察结果表明原脑啡肽基因在非人类灵长类动物子宫内膜中的表达与增殖状态有关并且受类固醇激素的调节。通过刺激前脑啡肽衍生肽的基因转录,合成和分泌来刺激1型星形胶质细胞。此外,神经肽,神经递质类似物及其推定的第二信使类似物可增加新生鼠心肌细胞原代培养物中的肿瘤坏死因子原脑啡肽基因的表达。心脏前脑啡肽基因表达导致与多核糖体以及更大形式的前脑啡肽衍生肽的合成和分泌相关的转录本。骨骼肌和心肌中前脑啡肽基因表达的发育程序似乎有很大差异,其中新生儿发育期间基因表达分别显着下降和增加。体外诱导分化的骨骼肌衍生成肌细胞显示原脑啡肽基因表达随分化而降低;较大的原脑啡肽衍生肽的非神经元表达以及原脑啡肽基因表达升高与未分化或具有快速分化潜能的组织之间的相关性增殖表明这些较大的肽在发育中的假定作用。

著录项

  • 作者单位

    University of Miami.;

  • 授予单位 University of Miami.;
  • 学科 Molecular biology.;Neurosciences.
  • 学位 Ph.D.
  • 年度 1991
  • 页码 306 p.
  • 总页数 306
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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