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肠道黏膜中全球基因表达水平的遗传控制:一项人类双胞胎研究。

Genetic control of global gene expression levels in the intestinal mucosa: a human twin study.

作者信息

Häsler Robert, Begun Alexander, Freitag-Wolf Sandra, Kerick Martin, Mah Nancy, Zvirbliene Aida, Spehlmann Martina E, von Wurmb-Schwark Nicole, Kupcinskas Limas, Rosenstiel Philip, Schreiber Stefan

机构信息

Institute of Clinical Molecular Biology, Center for Molecular Biosciences (ZMB), Christian Albrechts University of Kiel, Kiel, Germany.

出版信息

Physiol Genomics. 2009 Jun 10;38(1):73-9. doi: 10.1152/physiolgenomics.00010.2009. Epub 2009 Mar 10.

Abstract

Phenotypic variation between individuals, such as different mRNA expression levels, is influenced by genetic and nongenetic factors. Although several studies have addressed the interplay between genotypes and expression profiles in various model organisms in the recent years, the detailed and relative contributions of genetic and nongenetic factors in regulating plasticity of gene expression in barrier organs (e.g., skin, gut), which are exposed to continuous environmental challenge, are still poorly understood. Here we systematically monitored the level of genetic control over genomewide mRNA expression profiles in the healthy intestinal mucosa of 10 monozygotic and 10 dizygotic human twin pairs with microarray analyses. Our results, which are supported by real-time PCR and analysis of molecular phylogenetic conservation, indicate that genes associated with energy metabolism and cell and tissue regeneration pathways are under strong genetic control. Conversely, genes associated with immune response seem to be mainly controlled by exogenous factors. Further insights into the relative extent of genetic and nongenetic determinants of transcriptomal profiles and their influence on physiological and pathophysiological mechanisms are crucial to understanding the key role played by gene-environment interactions in health and disease.

摘要

个体之间的表型变异,如不同的mRNA表达水平,受到遗传和非遗传因素的影响。尽管近年来有几项研究探讨了不同模式生物中基因型与表达谱之间的相互作用,但对于暴露于持续环境挑战的屏障器官(如皮肤、肠道)中,遗传和非遗传因素在调节基因表达可塑性方面的详细及相对贡献,仍知之甚少。在此我们通过微阵列分析系统监测了10对同卵和10对异卵双胞胎健康肠黏膜中全基因组mRNA表达谱的遗传控制水平。我们的结果得到实时PCR和分子系统发育保守性分析的支持,表明与能量代谢以及细胞和组织再生途径相关的基因受到强大的遗传控制。相反,与免疫反应相关的基因似乎主要受外源因素控制。进一步深入了解转录组图谱中遗传和非遗传决定因素的相对程度及其对生理和病理生理机制的影响,对于理解基因 - 环境相互作用在健康和疾病中所起的关键作用至关重要。

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