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The complexity of miRNA-mediated repression

机译:miRNA介导的抑制的复杂性

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Since their discovery 20 years ago, miRNAs have attracted much attention from all areas of biology. These short (similar to 22 nt) non-coding RNA molecules are highly conserved in evolution and are present in nearly all eukaryotes. They have critical roles in virtually every cellular process, particularly determination of cell fate in development and regulation of the cell cycle. Although it has long been known that miRNAs bind to mRNAs to trigger translational repression and degradation, there had been much debate regarding their precise mode of action. It is now believed that translational control is the primary event, only later followed by mRNA destabilisation. This review will discuss the most recent advances in our understanding of the molecular underpinnings of miRNA-mediated repression. Moreover, we highlight the multitude of regulatory mechanisms that modulate miRNA function.
机译:自20年前发现以来,miRNA引起了生物学各个领域的广泛关注。这些短的(类似于22 nt)非编码RNA分子在进化中高度保守,几乎存在于所有真核生物中。它们在几乎每个细胞过程中都起着至关重要的作用,尤其是在细胞周期的发育和调控中确定细胞命运。尽管早就知道miRNA与mRNA结合以触发翻译抑制和降解,但关于其确切的作用方式仍存在许多争议。现在认为翻译控制是主要事件,仅在随后是mRNA去稳定化。这篇综述将讨论我们对miRNA介导的阻抑的分子基础的了解的最新进展。此外,我们重点介绍了许多调节miRNA功能的调控机制。

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