This is not the latest version of this item. The latest version can be found here.
MicroRNAs Cause Accelerated Decay of Short-Tailed Target mRNAs
Name
nihms-1552572.pdf
Description
Accepted version
Size
1.43 MB
Format
Adobe PDF
Checksum (MD5)
d2a38bf06d5b20f898d2bb477f99e815
Author(s) • • •
Eisen, Timothy J
Eichhorn, Stephen W
Subtelny, Alexander O
Bartel, David P
Date Issued
2020
Journal
Molecular Cell
Publisher
Elsevier BV
Version
Author's final manuscript
Abstract
© 2019 Elsevier Inc. MicroRNAs (miRNAs) specify the recruitment of deadenylases to mRNA targets. Despite this recruitment, we find that miRNAs have almost no effect on steady-state poly(A)-tail lengths of their targets in mouse fibroblasts, which motivates the acquisition of pre-steady-state measurements of the effects of miRNAs on tail lengths, mRNA levels, and translational efficiencies. Effects on translational efficiency are minimal compared to effects on mRNA levels, even for newly transcribed target mRNAs. Effects on target mRNA levels accumulate as the mRNA population approaches steady state, whereas effects on tail lengths peak for recently transcribed target mRNAs and then subside. Computational modeling of this phenomenon reveals that miRNAs cause not only accelerated deadenylation of their targets but also accelerated decay of short-tailed target molecules. This unanticipated effect of miRNAs largely prevents short-tailed target mRNAs from accumulating despite accelerated target deadenylation. The net result is a nearly imperceptible change to the steady-state tail-length distribution of targeted mRNAs.
Terms of Use
Creative Commons Attribution-NonCommercial-NoDerivs License
Persistent DSpace Link
DOI of Published Version
10.1016/J.MOLCEL.2019.12.004