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MitomiRs, ChloromiRs and Modelling of the microRNA Inhibition

机译:MitomiR,ChloromiR和microRNA抑制模型

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MicroRNAs are non-coding parts of nuclear and mitochondrial genomes, preventing the weakest part of the genetic regulatory networks from being expressed and preventing the appearance of a too many attractors in these networks. They have also a great influence on the chromatin clock, which ensures the updating of the genetic regulatory networks. The post-transcriptional inhibitory activity by the microRNAs, which is partly unspecific, is due firstly to their possibly direct negative action during translation by hybridizing tRNAs, especially those inside the mitochondrion, hence slowing mitochondrial respiration, and secondly to their action on a large number of putative m-RNA targets like those involved in immunetworks; We show that the circuits in the core of the interaction graphs are responsible for the small number of dedicated attractors that correspond to genetically controlled functions, partly due to a general filtering by the microRNAs. We analyze this influence as well as their impact on important functions like the control
机译:MicroRNA是核和线粒体基因组的非编码部分,从而阻止了基因调控网络中最薄弱的部分被表达,并阻止了这些网络中过多吸引子的出现。它们对染色质时钟也有很大的影响,从而确保了遗传调控网络的更新。 microRNA的转录后抑制活性部分是非特异性的,首先是由于它们在翻译过程中可能通过与tRNA尤其是线粒体内部的tRNA杂交而产生直接的负作用,从而减缓了线粒体呼吸,其次是由于它们对大量RNA的作用推定的m-RNA靶标,例如参与免疫工作的靶标;我们显示出,交互图核心中的电路负责对应于基因控制功能的少量专用吸引子,部分原因是由microRNA进行的一般过滤。我们分析了这种影响以及它们对控件等重要功能的影响

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