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首页> 外文期刊>Medical hypotheses >Possible role for microRNAs as inter-species mediators of epigenetic information in disease pathogenesis: Is the non-coding dark matter of the genome responsible for epigenetic interindividual or interspecies communication?
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Possible role for microRNAs as inter-species mediators of epigenetic information in disease pathogenesis: Is the non-coding dark matter of the genome responsible for epigenetic interindividual or interspecies communication?

机译:microRNA作为表观遗传信息的种间介质在疾病发病机理中的可能作用:基因组的非编码暗物质负责表观遗传的个体间或种间交流吗?

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MicroRNAs are short non-coding RNA molecules involved in the posttranscriptional epigenetic regulation of gene expression. Recent data show that microRNAs can be found in body fluids, and these microRNAs might enter cells giving rise to a hormone like way of action. MicroRNAs released in body fluids might affect other individuals, and there are some data of potential cross-species action of microRNAs, as well. Here, the authors discuss hypotheses concerning the potential pathogenic relevance of interindividual and cross-species action of microRNAs including food-derived microRNAs. Supposing that microRNAs might traverse the gastrointestinal tract, microRNAs might wander via the food-chain and even master regulatory microRNAs might be envisaged that could influence gene expression in a wide range of species and might thereby link different species via common gene expression signatures. Since many microRNA genes are located in the non-protein coding "dark matter" of the genome, a novel function of this "dark matter" is raised regarding interindividual and cross-species epigenetic communication via information transfer by gene products coded by the non-protein coding part of the genome. (c) 2014 Elsevier Ltd. All rights reserved.
机译:MicroRNA是参与基因表达的转录后表观遗传调控的短非编码RNA分子。最新数据表明,微RNA可以在体液中找到,这些微RNA可能进入细胞,从而产生类似激素的作用方式。体液中释放的MicroRNA可能会影响其他个体,并且也有一些MicroRNA潜在跨物种作用的数据。在这里,作者讨论了关于包括食物来源的microRNA在内的microRNA的个体间和跨物种作用的潜在致病相关性的假设。假设microRNA可能穿过胃肠道,microRNA可能会通过食物链游荡,甚至可以设想主调控microRNA会影响广泛物种中的基因表达,从而可能通过共同的基因表达特征连接不同的物种。由于许多microRNA基因位于基因组的非蛋白质编码“暗物质”中,因此该“暗物质”的新功能在非遗传基因编码的基因产物之间通过信息传递进行个体间和跨物种表观遗传交流中。蛋白编码基因组的一部分。 (c)2014 Elsevier Ltd.保留所有权利。

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