首页> 外文期刊>Journal of Molecular Neuroscience: MN >Estradiol Regulates Dorsal Vagal Complex Signal Transduction Pathway Transcriptional Reactivity to the AMPK Activator 5-Aminoimidazole-4-Carboxamide-Riboside (AICAR)
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Estradiol Regulates Dorsal Vagal Complex Signal Transduction Pathway Transcriptional Reactivity to the AMPK Activator 5-Aminoimidazole-4-Carboxamide-Riboside (AICAR)

机译:雌二醇调节AMPK激活剂5-氨基咪唑-4-羧酰胺-核糖核苷(AICAR)的背侧迷走神经复合信号转导途径转录反应性

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摘要

The ovarian hormone estradiol (E) regulates effects of hindbrain adenosine 5'-monophosphate-activated protein kinase (AMPK) on caudal dorsal vagal complex (cDVC) neuron genomic activation and systemic glucostasis. The present study examined the hypothesis that cDVC signal transduction pathways exhibit distinctive E-dependent reactivity to activation of this sensor. RT-PCR microarray analysis was performed on RNA extracted from the cDVC of E- or oil (O)-implanted ovariectomized (OVX) adult female rats injected into the caudal fourth ventricle with the AMP mimetic 5-aminoimidazole-4-carboxamide-riboside (AICAR) (A) or saline (S). Microarray results show that the majority of marker genes differentially expressed in the E/S versus O/S cDVC were upregulated, as only myc (TGF beta; WNT pathways), bcl2 (Hedgehog pathway), and serpine (hypoxia pathway) mRNA profiles were downregulated by E. Several JAK/STAT and NF kappa B signaling pathway marker gene profiles were upregulated in O/A but unchanged in E/A; additional NF kappa B genes were inhibited by A in E but not O. Hypoxia and p53 pathways contain genes that were inhibited or stimulated in O/A, but unaltered in E/A. Conversely, TGF beta, p53, and NOTCH pathways each contained marker genes that were correspondingly modified or maintained in E/A versus O/A. Moreover, several oxidative stress pathway genes were suppressed in O/A while elevated or unchanged in E/A. Hedgehog, PPAR, and WNT signaling pathways were characterized by numerous examples of A-induced reversal of E augmentation of marker gene expression coinciding with opposite or no drug effects in O. Data presented here demonstrate that E exerts distinctive effects on cDVC signal transduction pathway marker gene reactivity to activated AMPK. Further research is needed to determine if observed changes in signal pathway marker gene transcription correlate with adjustments in gene product protein expression, and to characterize the role of aforementioned signaling pathways in Esensitive cellular and systemic responses to hindbrain AMPK activation.
机译:卵巢激素雌二醇(E)调节后脑腺苷5'-单磷酸激活蛋白激酶(AMPK)对尾背迷走神经复合体(cDVC)神经元基因组激活和全身性糖酵解的作用。本研究检验了cDVC信号转导通路表现出独特的E依赖性反应性以激活该传感器的假设。 RT-PCR微阵列分析是对从AMP模仿的5-氨基咪唑-4-羧酰胺-核糖核苷( AICAR)(A)或盐水(S)。基因芯片结果显示,在E / S与O / S cDVC中差异表达的大多数标记基因均被上调,因为只有myc(TGFβ; WNT途径),bcl2(Hedgehog途径)和Serpine(低氧途径)mRNA谱被表达E / A下调了一些JAK / STAT和NFκB信号通路标记基因的基因型,而O / A上调了,而E / A不变。其他NF kappa B基因在E中被A抑制,但在O中未被抑制。缺氧和p53途径包含在O / A中被抑制或刺激但在E / A中不变的基因。相反,TGF beta,p53和NOTCH途径各自包含标记基因,这些标记基因在E / A与O / A中相对应地被修饰或维持。此外,在O / A中抑制了几种氧化应激途径基因,而在E / A中则升高或未改变。刺猬,PPAR和WNT信号通路的特征是A诱导E逆转E增强标记基因表达,与O中相反或没有药物作用同时发生的例子。对活化的AMPK的基因反应性。需要进一步的研究来确定信号通路标记基因转录中观察到的变化是否与基因产物蛋白表达的调节相关,并表征上述信号通路在对后脑AMPK激活的敏感细胞和全身反应中的作用。

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