首页> 外文期刊>Brain research. Molecular brain research >Five mutations in the GABA A alpha6 gene 5' flanking region are associated with a reduced basal and ethanol-induced alpha6 upregulation in mutated Sardinian alcohol non-preferring rats.
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Five mutations in the GABA A alpha6 gene 5' flanking region are associated with a reduced basal and ethanol-induced alpha6 upregulation in mutated Sardinian alcohol non-preferring rats.

机译:GABA A alpha6基因5'侧翼区域中的五个突变与突变的撒丁岛非酒精性大鼠的基础和乙醇诱导的alpha6上调的减少有关。

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The presence of four nucleotide changes and a three base-pair deletion in the GABA A alpha6-subunit promoter is described in Sardinian alcohol non-preferring rats, selectively bred for their ethanol aversion. These mutations are associated with the R100Q alpha6 intragenic mutation that was previously characterized in the same animals. The possibility that these mutated nucleotides alter the ethanol-induced upregulation of the alpha6 gene was investigated by measuring cerebellar alpha6 mRNA levels after a chronic ethanol liquid diet in sNP rat. Real-time quantitative PCR showed an increased alpha6 gene expression after ethanol ingestion in normal and mutated rats. However, lower amounts of alpha6 mRNA levels were detected both in control and in ethanol-treated sNP rats carrying the five promoter and the intragenic mutations in a homozygous state. Using the electromobility shift assay, specific DNA binding sites were found in cerebellar extracts of the alpha6 regions comprising the five mutations. These results suggest that one or more of the mutated binding sites that were found in the 5' flanking alpha6 region may be a consensus sequence for regulatory factors which are responsible for both basal and ethanol-induced alpha6 gene expression.
机译:在撒丁岛非酒精性偏爱的大鼠中描述了GABA A alpha6-亚基启动子中四个核苷酸变化和三个碱基对缺失的存在,这些动物因乙醇厌恶而选择性繁殖。这些突变与先前在相同动物中表征的R100Q alpha6基因内突变相关。通过在sNP大鼠中长期饮酒后测量小脑α6mRNA水平,研究了这些突变的核苷酸改变乙醇诱导的α6基因上调的可能性。实时定量PCR显示,正常和突变大鼠摄入乙醇后,α6基因表达增加。然而,在对照中和在以纯合子状态携带五个启动子和基因内突变的乙醇处理的sNP大鼠中,均检测到较低水平的alpha6 mRNA水平。使用电动迁移率分析,在包含五个突变的alpha6区的小脑提取物中发现了特定的DNA结合位点。这些结果表明,在5'侧翼α6区域中发现的一个或多个突变的结合位点可能是调节因子的共有序列,所述调节因子负责基础和乙醇诱导的α6基因表达。

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