MicroRNAs (miRNAs) play an important role in gene regulatory networks in animals. Yet, the mechanistic details of their function in translation inhibition or messenger RNA (mRNA) destabilization remain controversial. To directly examine the earliest events in this process, we have developed an in vitro translation system using mouse Krebs-2 ascites cell-free extract that exhibits an authentic miRNA response. We show here that translation initiation, specifically the 5′ cap recognition process, is repressed by endogenous let-7 miRNAs within the first 15 minutes of mRNA exposure to the extract when no destabilization of the transcript is observed. Our results indicate that inhibition of translation initiation is the earliest molecular event effected by miRNAs. Other mechanisms, such as mRNA degradation, may subsequently consolidate mRNA silencing.

MicroRNA inhibition of translation initiation in vitro by targeting the cap-binding complex eIF4F / G. Mathonnet, M.R. Fabian, Y.V. Svitkin, A. Parsyan, L. Huck, T. Murata, S. Biffo, W.C. Merrick, E. Darzynkiewicz, R.S. Pillai, W. Filipowicz, T.F. Duchaine, N. Sonenberg. - In: SCIENCE. - ISSN 0036-8075. - 317:5845(2007 Sep 21), pp. 1764-1767. [10.1126/science.1146067]

MicroRNA inhibition of translation initiation in vitro by targeting the cap-binding complex eIF4F

S. Biffo;
2007

Abstract

MicroRNAs (miRNAs) play an important role in gene regulatory networks in animals. Yet, the mechanistic details of their function in translation inhibition or messenger RNA (mRNA) destabilization remain controversial. To directly examine the earliest events in this process, we have developed an in vitro translation system using mouse Krebs-2 ascites cell-free extract that exhibits an authentic miRNA response. We show here that translation initiation, specifically the 5′ cap recognition process, is repressed by endogenous let-7 miRNAs within the first 15 minutes of mRNA exposure to the extract when no destabilization of the transcript is observed. Our results indicate that inhibition of translation initiation is the earliest molecular event effected by miRNAs. Other mechanisms, such as mRNA degradation, may subsequently consolidate mRNA silencing.
animals; carcinoma, krebs 2; cell extracts; encephalomyocarditis virus; eukaryotic initiation factor-4f; gene expression regulation; luciferases, renilla; mice; micrornas; protein biosynthesis; rna caps; ribosomes; medicine (all); multidisciplinary
Settore BIO/06 - Anatomia Comparata e Citologia
21-set-2007
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/492825
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