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mRNA destabilization is the dominant effect of mammalian microRNAs by the time substantial repression ensues (sequencing)

GSE60426 Homo sapiens; Mus musculus Expression profiling by high throughput sequencing; Non-coding RNA profiling by high throughput sequencing; Third-party reanalysis 85 samples Submitted 2014/09/25 Platform GPL13112Platform GPL11154Platform GPL9250Platform GPL9115
Summary
MicroRNAs (miRNAs) regulate target mRNAs through a combination of translational repression and mRNA destabilization, with mRNA destabilization dominating at steady state in the few contexts examined globally. Here, we extend the global steady-state measurements to additional mammalian contexts and find that regardless of the miRNA, cell type, growth condition, or translational state, mRNA destabilization explains most (66%–>90%) miRNA-mediated repression. We also determine the relative dynamics of translational repression and mRNA destabilization for endogenous mRNAs as a miRNA is induced. Although translational repression occurs rapidly, its effect is relatively weak, such that by the time consequential repression ensues, the effect of mRNA destabilization dominates. These results imply that consequential miRNA-mediated repression is largely irreversible and provide other insights into the nature of miRNA-mediated regulation. They also simplify future studies, dramatically extending the known contexts and time points for which monitoring mRNA changes captures most of the direct miRNA effects.
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Also filed as BioProject PRJNA258219 and SRA study SRP045501. Searching any of these in the dataset finder brings you back here.

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