2′-O-Methylation of the second transcribed nucleotide within the mRNA 5′ cap impacts the protein production level in a cell-specific manner and contributes to RNA immune evasion

Author:

Drazkowska Karolina1ORCID,Tomecki Rafal23,Warminski Marcin4ORCID,Baran Natalia15,Cysewski Dominik26ORCID,Depaix Anaïs1,Kasprzyk Renata1,Kowalska Joanna4ORCID,Jemielity Jacek1ORCID,Sikorski Pawel J15ORCID

Affiliation:

1. Centre of New Technologies, University of Warsaw , Banacha 2c, 02-097  Warsaw , Poland

2. Institute of Biochemistry and Biophysics, Polish Academy of Sciences , Pawinskiego 5a, 02-106 Warsaw , Poland

3. Institute of Genetics and Biotechnology, Faculty of Biology, University of Warsaw , Pawinskiego 5a, 02-106 Warsaw, Poland

4. Division of Biophysics, Institute of Experimental Physics, Faculty of Physics, University of Warsaw , Pasteura 5, 02-093 Warsaw , Poland

5. Department of Environmental Microbiology and Biotechnology, Institute of Microbiology, Faculty of Biology, University of Warsaw , Miecznikowa 1, 02-096 Warsaw, Poland

6. Clinical Research Centre, Medical University of Bialystok , M. Sklodowskiej-Curie 24a, 15-276 Bialystok, Poland

Abstract

Abstract In mammals, m7G-adjacent nucleotides undergo extensive modifications. Ribose of the first or first and second transcribed nucleotides can be subjected to 2′-O-methylation to form cap1 or cap2, respectively. When the first transcribed nucleotide is 2′-O-methylated adenosine, it can be additionally modified to N6,2′-O-dimethyladenosine (m6Am). Recently, the crucial role of cap1 in distinguishing between ‘self’ and ‘non-self’ in mammalian cells during viral infection was revealed. Here, we attempted to understand the impact of cap methylations on RNA-related processes. Therefore, we synthesized tetranucleotide cap analogues and used them for RNA capping during in vitro transcription. Using this tool, we found that 2′-O-methylation of the second transcribed nucleotide within the mRNA 5′ cap influences protein production levels in a cell-specific manner. This modification can strongly hamper protein biosynthesis or have no influence on protein production levels, depending on the cell line. Interestingly, 2′-O-methylation of the second transcribed nucleotide and the presence of m6Am as the first transcribed nucleotide serve as determinants that define transcripts as ‘self’ and contribute to transcript escape from the host innate immune response. Additionally, cap methylation status does not influence transcript affinity towards translation initiation factor eIF4E or in vitro susceptibility to decapping by DCP2; however, we observe the resistance of cap2-RNA to DXO (decapping exoribonuclease)-mediated decapping and degradation.

Funder

National Science Centre

Publisher

Oxford University Press (OUP)

Subject

Genetics

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