首页> 外文学位 >Central control of reproduction: Mechanisms of kisspeptin actions on gonadotropin-releasing hormone neurons: intrinsic, network properties and their sensitivity to estradiol.
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Central control of reproduction: Mechanisms of kisspeptin actions on gonadotropin-releasing hormone neurons: intrinsic, network properties and their sensitivity to estradiol.

机译:生殖的中央控制:亲吻肽对促性腺激素释放激素神经元的作用机制:内在,网络特性及其对雌二醇的敏感性。

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摘要

Gonadotropin-releasing hormone (GnRH) neurons centrally control reproduction. A distinct pattern of GnRH release is required for secretion of gonadotropic hormones from the pituitary. Gonadotropins, in turn, promote gametogenesis and steroid production by the gonads. Steroids feed back to regulate GnRH release. Understanding GnRH neuron function is indispensable to find treatments for people with fertility abnormalities.;An example of such a disorder is hypogonadotropic hypogonadism (HH). Patients with HH are infertile, and this is likely due to an abnormal pattern of GnRH release. Many of these patients carry mutations in G-protein-coupled receptor 54 (GPR54). A great deal of work has been done on the role of GPR54 and its ligand kisspeptin in reproduction; however, the mechanisms of kisspeptin action are not well understood. GnRH neurons express GPR54, suggesting direct actions of kisspeptin; however, GPR54 is also expressed in other parts of the brain, suggesting indirect actions are possible.;This dissertation investigated the effects of kisspeptin on the intrinsic and synaptic properties of GnRH neurons and its potential role in estradiol feedback regulation of GnRH activity. First, we showed that kisspeptin utilizes direct and indirect mechanisms to increase GnRH neuron activity. Estradiol potentiated the GnRH response to kisspeptin via transsynaptic mechanisms. The direct effect of kisspeptin was not estradiol-sensitive and involved alterations in potassium conductances. Second, we investigated the transsynaptic mechanisms kisspeptin uses to increase GnRH neuron activity. Our data showed that estradiol enabled kisspeptin to increase GABA and glutamate transmission to GnRH neurons and postsynaptic responses to GABA. Third, we studied the direct mechanism of kisspeptin action by looking at its effect on voltage-gated potassium currents in GnRH neurons. We also examined the role of these channels in estradiol positive/negative feedback regulation of GnRH neurons. We found that kisspeptin excites GnRH activity by reducing the transient component of voltagegated potassium currents. Additionally, we demonstrated that voltage-gated potassium conductances are targets of estradiol feedback regulation of GnRH neuronal activity. Altogether, this work provides novel findings about the mechanisms responsible for the stimulatory effects of kisspeptin on GnRH neuronal activity, as well as its role in estradiol feedback regulation of GnRH secretion.
机译:促性腺激素释放激素(GnRH)神经元集中控制生殖。从垂体分泌促性腺激素需要GnRH释放的独特模式。促性腺激素反过来促进性腺的配子发生和类固醇生成。类固醇反馈调节GnRH释放。了解GnRH神经元功能对于寻找生育异常的患者是必不可少的。;这种疾病的一个例子是性腺功能低下性腺机能减退(HH)。 HH患者不孕,这很可能是由于GnRH释放异常引起的。这些患者中许多都携带G蛋白偶联受体54(GPR54)突变。关于GPR54及其配体Kisspeptin在生殖中的作用,已经做了大量工作。但是,对kisepteptin作用的机制尚不十分了解。 GnRH神经元表达GPR54,表明亲吻肽的直接作用。然而,GPR54也可以在大脑其他部位表达,提示可能存在间接作用。本论文研究了kisseptin对GnRH神经元内在和突触特性的影响及其在雌二醇反馈调节GnRH活性中的潜在作用。首先,我们表明Kisspeptin利用直接和间接机制来增加GnRH神经元活性。雌二醇通过转突触机制增强了GnRH对Kisspeptin的反应。 Kisspeptin的直接作用不是雌二醇敏感的,涉及钾电导的改变。其次,我们研究了kisepteptin用于增加GnRH神经元活性的转突触机制。我们的数据显示,雌二醇使kisseptin能够增加GABA和谷氨酸向GnRH神经元的传递以及对GABA的突触后反应。第三,我们通过观察其对GnRH神经元的电压门控钾电流的作用,研究了其直接作用机理。我们还检查了这些通道在GnRH神经元的雌二醇正/负反馈调节中的作用。我们发现,kisspeptin通过减少电压门控钾电流的瞬态分量来激发GnRH活性。此外,我们证明电压门控钾电导是GnRH神经元活动的雌二醇反馈调节的目标。总的来说,这项工作提供了有关kisseptin对GnRH神经元活性的刺激作用机制的新发现,以及其在雌二醇反馈调节GnRH分泌中的作用。

著录项

  • 作者

    Pielecka-Fortuna, Justyna.;

  • 作者单位

    University of Virginia.;

  • 授予单位 University of Virginia.;
  • 学科 Biology Neuroscience.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 150 p.
  • 总页数 150
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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