The comprehensive interactomes of human adenosine RNA methyltransferases and demethylases reveal distinct functional and regulatory features

Author:

Covelo-Molares Helena1,Obrdlik Ales1,Poštulková Ivana1,Dohnálková Michaela1,Gregorová Pavlína1,Ganji Ranjani1,Potěšil David1,Gawriyski Lisa2,Varjosalo Markku2,Vaňáčová Štěpánka1ORCID

Affiliation:

1. Central European Institute of Technology (CEITEC), Masaryk University, Brno 62500, Czech Republic

2. Institute of Biotechnology & HiLIFE – Helsinki Institute of Life Science, University of Helsinki, Helsinki 00014, Finland

Abstract

Abstract N6-methyladenosine (m6A) and N6,2′-O-dimethyladenosine (m6Am) are two abundant modifications found in mRNAs and ncRNAs that can regulate multiple aspects of RNA biology. They function mainly by regulating interactions with specific RNA-binding proteins. Both modifications are linked to development, disease and stress response. To date, three methyltransferases and two demethylases have been identified that modify adenosines in mammalian mRNAs. Here, we present a comprehensive analysis of the interactomes of these enzymes. PCIF1 protein network comprises mostly factors involved in nascent RNA synthesis by RNA polymerase II, whereas ALKBH5 is closely linked with most aspects of pre-mRNA processing and mRNA export to the cytoplasm. METTL16 resides in subcellular compartments co-inhabited by several other RNA modifiers and processing factors. FTO interactome positions this demethylase at a crossroad between RNA transcription, RNA processing and DNA replication and repair. Altogether, these enzymes share limited spatial interactomes, pointing to specific molecular mechanisms of their regulation.

Funder

Czech Science Foundation

The Ministry of Education, Youth and Sports

CEITEC

Brno City Municipality Scholarship

European Regional Development Fund

CIISB

MEYS CR

e-Infrastruktura CZ

Publisher

Oxford University Press (OUP)

Subject

Genetics

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