Litcius/Paper detail

ALKBH3 partner ASCC3 mediates P-body formation and selective clearance of MMS-induced 1-methyladenosine and 3-methylcytosine from mRNA

Kristian Lied Wollen, Lars Hagen, Cathrine Broberg Vågbø, Renana Rabe, Tobias S. Iveland, Per Arne, Animesh Sharma, Bjørnar Sporsheim, Hilde O. Erlandsen, Vuk Palibrk, Magnar Bjørås, Davi M. Fonseca, Nima Mosammaparast, Geir Slupphaug

2021Journal of Translational Medicine24 citationsDOIOpen Access PDF

Abstract

Abstract Background Reversible enzymatic methylation of mammalian mRNA is widespread and serves crucial regulatory functions, but little is known to what degree chemical alkylators mediate overlapping modifications and whether cells distinguish aberrant from canonical methylations. Methods Here we use quantitative mass spectrometry to determine the fate of chemically induced methylbases in the mRNA of human cells. Concomitant alteration in the mRNA binding proteome was analyzed by SILAC mass spectrometry. Results MMS induced prominent direct mRNA methylations that were chemically identical to endogenous methylbases. Transient loss of 40S ribosomal proteins from isolated mRNA suggests that aberrant methylbases mediate arrested translational initiation and potentially also no-go decay of the affected mRNA. Four proteins (ASCC3, YTHDC2, TRIM25 and GEMIN5) displayed increased mRNA binding after MMS treatment. ASCC3 is a binding partner of the DNA/RNA demethylase ALKBH3 and was recently shown to promote disassembly of collided ribosomes as part of the ribosome quality control (RQC) trigger complex. We find that ASCC3-deficient cells display delayed removal of MMS-induced 1-methyladenosine (m 1 A) and 3-methylcytosine (m 3 C) from mRNA and impaired formation of MMS-induced P-bodies. Conclusions Our findings conform to a model in which ASCC3-mediated disassembly of collided ribosomes allows demethylation of aberrant m 1 A and m 3 C by ALKBH3. Our findings constitute first evidence of selective sanitation of aberrant mRNA methylbases over their endogenous counterparts and warrant further studies on RNA-mediated effects of chemical alkylators commonly used in the clinic.

Topics & Concepts

Messenger RNAN6-MethyladenosineRibosomeP-bodiesPolysomeMethylationBiologyRNA methylationCell biologyRNADemethylaseMolecular biologyDemethylationTranslation (biology)ChemistryBiochemistryDNA methylationMethyltransferaseHistoneGene expressionDNAGeneRNA modifications and cancerCancer-related gene regulationEpigenetics and DNA Methylation