首页> 外文期刊>Neuroendocrinology: International Journal for Basic and Clinical Studies on Neuroendocrine Relationships >Differential Gene Expression in Gonadotropin-Releasing Hormone Neurons of Male and Metestrous Female Mice
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Differential Gene Expression in Gonadotropin-Releasing Hormone Neurons of Male and Metestrous Female Mice

机译:雌性和雌性雌性小鼠促性腺激素释放激素神经元中的差异基因表达

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Background: Gonadotropin-releasing hormone (GnRH) neurons play a pivotal role in the regulation of the hypothalamic-pituitary gonadal axis in a sex-specific manner. We hypothesized that the differences seen in reproductive functions of males and females are associated with a sexually dimorphic gene expression profile of GnRH neurons. Methods and Results: We compared the transcriptome of GnRH neurons obtained from intact metestrous female and male GnRH-green fluorescent protein transgenic mice. About 1,500 individual GnRH neurons from each sex were sampled with laser capture microdissection followed by whole-transcriptome amplification for gene expression profiling. Under stringent selection criteria (fold change >1.6, adjusted p value 0.01), Affymetrix Mouse Genome 430 PM array analysis identified 543 differentially expressed genes. Sexual dimorphism was most apparent in gene clusters associated with synaptic communication, signal transduction, cell adhesion, vesicular transport and cell metabolism. To validate microarray results, 57 genes were selected, and 91% of their differential expression was confirmed by real-time PCR. Similarly, 88% of microarray results were confirmed with PCR from independent samples obtained by patch pipette harvesting and pooling of 30 GnRH neurons from each sex. We found significant differences in the expression of genes involved in vesicle priming and docking (Syt1, Cplx1), GABAergic (Gabra3, Gabrb3, Gabrg2) and glutamatergic (Gria1, Grin1, Slc17a6) neurotransmission, peptide signaling (Sstr3, Npr2, Cxcr4) and the regulation of intracellular ion homeostasis (Cacna1, Cacnb1, Cacng5, Kcnq2, Kcnc1). Conclusion: The striking sexual dimorphism of the GnRH neuron transcriptome we report here contributes to a better understanding of the differences in cellular mechanisms of GnRH neurons in the two sexes. (C) 2015 S. Karger AG, Basel
机译:背景:促性腺激素释放激素(GnRH)神经元在以性别特定的方式调节下丘脑-垂体性腺轴中起关键作用。我们假设男性和女性生殖功能的差异与GnRH神经元的性双态基因表达谱有关。方法和结果:我们比较了从完整的雌性和雄性GnRH-绿色荧光蛋白转基因小鼠中获得的GnRH神经元的转录组。通过激光捕获显微切割对来自每个性别的大约1,500个个体GnRH神经元进行采样,然后进行全转录组扩增以进行基因表达谱分析。在严格的选择标准下(倍数变化> 1.6,调整后的p值0.01),Affymetrix小鼠基因组430 PM阵列分析确定了543个差异表达的基因。在与突触通讯,信号转导,细胞粘附,囊泡转运和细胞代谢有关的基因簇中,性二态性最为明显。为了验证微阵列结果,选择了57个基因,并通过实时PCR证实了它们差异表达的91%。同样,通过PCR证实了88%的微阵列结果,这些结果是通过补片移液管收集并收集来自每个性别的30个GnRH神经元的独立样本获得的。我们发现与囊泡引发和对接(Syt1,Cplx1),GABA能(Gabra3,Gabrb3,Gabrg2)和谷氨酸能(Gria1,Grin1,Slc17a6)神经传递,肽信号传导(Sstr3,Npr2,Cxcr4)和基因有关的表达差异显着调节细胞内离子稳态(Cacna1,Cacnb1,Cacng5,Kcnq2,Kcnc1)。结论:我们在这里报道的GnRH神经元转录组的惊人性二态性有助于更好地了解两种性别的GnRH神经元细胞机制的差异。 (C)2015 S.Karger AG,巴塞尔

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