N-terminal alanine-rich (NTAR) sequences drive precise start codon selection resulting in elevated translation of multiple proteins including ERK1/2

Author:

Buscà Roser12,Onesto Cercina123,Egensperger Mylène12,Pouysségur Jacques124,Pagès Gilles124,Lenormand Philippe12ORCID

Affiliation:

1. Université Côte d’Azur (UCA), CNRS UMR 7284 and INSERM U 1081, Institute for Research on Cancer and Aging Nice (IRCAN) , 28 Avenue de Valombrose , 06107  Nice , France

2. Centre Antoine Lacassagne , Nice , France

3. Polytech’Nice Sophia, Bioengineering Department , Sophia-Antipolis, France

4. Centre Scientifique de Monaco, Biomedical Department , Principality of Monaco

Abstract

Abstract We report the discovery of N-terminal alanine-rich sequences, which we term NTARs, that act in concert with their native 5′-untranslated regions to promote selection of the proper start codon. NTARs also facilitate efficient translation initiation while limiting the production of non-functional polypeptides through leaky scanning. We first identified NTARs in the ERK1/2 kinases, which are among the most important signaling molecules in mammals. Analysis of the human proteome reveals that hundreds of proteins possess NTARs, with housekeeping proteins showing a particularly high prevalence. Our data indicate that several of these NTARs act in a manner similar to those found in the ERKs and suggest a mechanism involving some or all of the following features: alanine richness, codon rarity, a repeated amino acid stretch and a nearby second AUG. These features may help slow down the leading ribosome, causing trailing pre-initiation complexes (PICs) to pause near the native AUG, thereby facilitating accurate translation initiation. Amplification of erk genes is frequently observed in cancer, and we show that NTAR-dependent ERK protein levels are a rate-limiting step for signal output. Thus, NTAR-mediated control of translation may reflect a cellular need to precisely control translation of key transcripts such as potential oncogenes. By preventing translation in alternative reading frames, NTAR sequences may be useful in synthetic biology applications, e.g. translation from RNA vaccines.

Funder

CNRS

Publisher

Oxford University Press (OUP)

Subject

Genetics

Reference65 articles.

1. Biphasic and synergistic activation of p44mapk (ERK1) by growth factors: correlation between late phase activation and mitogenicity;Meloche;Mol. Endocrinol.,1992

2. Specificity of receptor tyrosine kinase signaling: transient versus sustained extracellular signal-regulated kinase activation;Marshall;Cell,1995

3. ERK signalling: a master regulator of cell behaviour, life and fate;Lavoie;Nat. Rev. Mol. Cell Biol.,2020

4. Outstanding questions in developmental ERK signaling;Patel;Development,2018

5. Activation mechanism of the MAP kinase ERK2 by dual phosphorylation;Canagarajah;Cell,1997

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