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首页> 外文期刊>Genomics >Ethanol-response genes and their regulation analyzed by a microarray and comparative genomic approach in the nematode Caenorhabditis elegans.
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Ethanol-response genes and their regulation analyzed by a microarray and comparative genomic approach in the nematode Caenorhabditis elegans.

机译:通过线虫秀丽隐杆线虫的微阵列和比较基因组方法分析了乙醇响应基因及其调控。

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The nematode shows responses to acute ethanol exposure that are similar to those observed in humans, mice, and Drosophila, namely hyperactivity followed by uncoordination and sedation. We used in this report the nematode Caenorhabditis elegans as a model system to identify and characterize the genes that are affected by ethanol exposure and to link those genes functionally into an ethanol-induced gene network. By analyzing the expression profiles of all C. elegans ORFs using microarrays, we identified 230 genes affected by ethanol. While the ethanol response of some of the identified genes was significant at early time points, that of the majority was at late time points, indicating that the genes in the latter case might represent the physiological consequence of the ethanol exposure. We further characterized the early response genes that may represent those involved directly in the ethanol response. These genes included many heat shock protein genes, indicating that high concentration of ethanol actsas a strong stress to the animal. Interestingly, we identified two non-heat-shock protein genes that were specifically responsive to ethanol. glr-2 was the only glutamate receptor gene to be induced by ethanol. T28C12.4, which encodes a protein with limited homology to human neuroligin, was also specific to ethanol stress. Finally, by analyzing the promoter regions of the early response genes, we identified a regulatory element, TCTGCGTCTCT, that was necessary for the expression of subsets of ethanol response genes.
机译:线虫显示出对急性乙醇暴露的反应,类似于在人,小鼠和果蝇中观察到的反应,即活动过度,然后发生不协调和镇静作用。在本报告中,我们将线虫秀丽隐杆线虫用作模型系统,以鉴定和表征受乙醇暴露影响的基因,并将这些基因功能上连接到乙醇诱导的基因网络中。通过使用微阵列分析所有秀丽隐杆线虫ORF的表达谱,我们鉴定了受乙醇影响的230个基因。尽管某些已鉴定基因的乙醇反应在早期时间点很显着,但大多数基因的乙醇反应在晚期时间点很明显,这表明在后一种情况下,这些基因可能代表了乙醇暴露的生理后果。我们进一步表征了可能代表直接参与乙醇反应的那些基因的早期反应基因。这些基因包括许多热休克蛋白基因,表明高浓度的乙醇对动物产生了强烈的压力。有趣的是,我们鉴定了两个对乙醇有特殊反应的非热休克蛋白基因。 glr-2是乙醇诱导的唯一谷氨酸受体基因。 T28C12.4编码一种与人神经胶蛋白具有有限同源性的蛋白质,也对乙醇胁迫具有特异性。最后,通过分析早期反应基因的启动子区域,我们确定了调控元件TCTGCGTCTCT,这是表达乙醇反应基因子集所必需的。

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