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Impaired repression at a vasopressin promoter polymorphism in a rat model of trait anxiety and depression

机译:在焦虑和抑郁的大鼠模型中,加压素启动子多态性的抑制受损

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摘要

Two inbred rat lines have been developed that show either high (HAB) or low (LAB) anxiety-related behavior. The behavioral phenotype correlates with arginine vasopressin (AVP) expression at the level of the hypothalamic paraventricular nucleus (PVN), but not supraoptic nucleus, with HAB animals overexpressing the neuropeptide in both magnocellular and parvocellular subdivisions of the PVN.This study aimed to investigate the molecular cause of the AVP overexpression in the PVN of the HAB animals. Sequencing of the AVP locus resulted in the detection of a number of single nucleotide polymorphisms (SNPs) in the promoter differing between the HAB and LAB animals. Two of the SNPs were embedded in cis-regulatory elements. Genotyping further revealed that the HAB-specific allele of the AVP gene promoter occurs in 1.5% of outbred Wistar rats. An assay was developed to address the question of differential allele-specific transcription rates between the LAB and HAB alleles using cross-mated HAB/LAB F1 animals. Results from the experiment revealed the HAB AVP promoter to be more transcriptionally active in vivo. EMSA assays confirmed that one specific SNP [A(-1276)G] conferred reduced binding of the transcriptional repressor CArG binding factor A (CBF-A) in the HAB allele. Reporter gene assays supported the view that the A(-1276)G transition in the CArG element impairs CBF-A repression in the HAB allele, which in turn relates to a weakened repression of the intact HAB AVP promoter by CBF-A. Furthermore, CBF-A is highly co-expressed in AVP-containing neurons of the PVN supporting an important role for regulation of AVP gene expression in vivo. Taken together, these results demonstrate a role for an AVP gene polymorphism and CBF-A in elevated AVP expression in the PVN of HAB rats likely to contribute to their behavioral and neuroendocrine phenotype.Phenotypic variation among organisms is central to evolutionary adaptations underlying natural and artificial selection, and also determines individual susceptibility to common diseases including cardiovascular, metabolic and age related and psychiatric diseases. Most phenotypic diversity in natural populations is characterised by differences in degree rather than in kind. In accordance with this view, HAB rats lacked changes in the coding part of the vasopressin gene, but instead were homozygous for the polymorphic promoter region. Therefore, the HAB specific AVP promoter represents a natural model for AVP overexpression and highlights, in turn, cognate molecular pathways which potentially fuel the resulting pathologies. Specifically, our finding that the SNP in position 1276 of the AVP gene promoter underlies AVP overexpression in the PVN of HAB rats, makes this SNP a potential target for further studies aimed at improving therapeutic tools. Finally, further studies are necessary to understand to which degree and in concert with which vulnerability loci vasopressin overexpression underlies the complex neuroendocrine and behavioural stigmata in the HAB line. Certainly, such studies will yield important insights into gene-gene interactions between susceptibility genes and shed light on additional pathways suitable for therapeutic interventions. In conclusion, this present work exemplifies that selective inbreeding for behavioural traits and combined phenotypic and molecular analysis of candidate genes is an important step and tool to address these issues.
机译:已开发出两种自交系大鼠,它们表现出高(HAB)或低(LAB)焦虑相关行为。行为表型与下丘脑室旁核(PVN)水平的精氨酸血管加压素(AVP)表达相关,但与视上核无关,HAB动物在PVN的巨细胞和小细胞亚区中都过度表达神经肽。 HAB动物PVN中AVP过表达的分子原因。 AVP基因座的测序导致检测到启动子中的许多单核苷酸多态性(SNP)在HAB和LAB动物之间有所不同。两个SNPs嵌入顺式调控元件。基因分型进一步揭示了AVP基因启动子的HAB特异性等位基因发生在1.5%的远距离Wistar大鼠中。开发了一种测定法,以解决使用交配的HAB / LAB F1动物在LAB和HAB等位基因之间差异等位基因特异性转录速率的问题。实验结果表明,HAB AVP启动子在体内更具转录活性。 EMSA分析证实,一种特定的SNP [A(-1276)G]赋予HAB等位基因中转录抑制因子CArG结合因子A(CBF-A)减少的结合。记者基因分析支持以下观点:CArG元件中的A(-1276)G过渡会削弱HAB等位基因中的CBF-A抑制,这又与CBF-A削弱完整HAB AVP启动子的抑制作用有关。此外,CBF-A在含AVP的PVN神经元中高度共表达,支持在体内调节AVP基因表达的重要作用。综上所述,这些结果表明AVP基因多态性和CBF-A在HAB大鼠PVN中AVP表达升高中可能起其行为和神经内分泌表型的作用。生物之间的表型变异是天然和人工基础进化适应的关键选择,并确定个人对常见疾病的易感性,包括心血管疾病,代谢疾病,与年龄有关的疾病和精神疾病。自然种群中大多数表型多样性的特征在于程度而不是种类的差异。按照这种观点,HAB大鼠在血管加压素基因的编码部分没有变化,但是在多态性启动子区域是纯合的。因此,HAB特异的AVP启动子代表了AVP过表达的自然模型,并反过来突出了可能加剧所导致的病理状态的同源分子途径。具体而言,我们的发现是,AVP基因启动子的1276位SNP成为HAB大鼠PVN中AVP过表达的基础,这使该SNP成为旨在改善治疗手段的进一步研究的潜在目标。最后,有必要进行进一步的研究,以了解HAB系中复杂的神经内分泌和行为柱头在何种程度上以及与哪些易位基因相关的血管加压素过表达。当然,这些研究将对敏感性基因之间的基因-基因相互作用产生重要的见解,并为适用于治疗性干预的其他途径提供启示。总之,这项工作证明了对行为特征的选择性近交以及候选基因的表型和分子分析相结合是解决这些问题的重要步骤和工具。

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    Murgatroyd Christopher A.;

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  • 年度 2005
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