Modification of Adenosine196 by Mettl3 Methyltransferase in the 5’-External Transcribed Spacer of 47S Pre-rRNA Affects rRNA Maturation

Ribosome biogenesis is among the founding processes in the cell. During the first stages of ribosome biogenesis, polycistronic precursor of ribosomal RNA passes complex multistage maturation after transcription. Quality control of preribosomal RNA (pre-rRNA) processing is precisely regulated by non-...

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Main Authors: Olga Sergeeva, Philipp Sergeev, Pavel Melnikov, Tatiana Prikazchikova, Olga Dontsova, Timofei Zatsepin
Format: Article
Language:English
Published: MDPI AG 2020-04-01
Series:Cells
Subjects:
Online Access:https://www.mdpi.com/2073-4409/9/4/1061
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spelling doaj-5be631d4f5e14601ac7b6f38b254d3192020-11-25T03:31:16ZengMDPI AGCells2073-44092020-04-0191061106110.3390/cells9041061Modification of Adenosine196 by Mettl3 Methyltransferase in the 5’-External Transcribed Spacer of 47S Pre-rRNA Affects rRNA MaturationOlga Sergeeva0Philipp Sergeev1Pavel Melnikov2Tatiana Prikazchikova3Olga Dontsova4Timofei Zatsepin5Skolkovo Institute of Science and Technology, Skolkovo, 121205 Moscow, RussiaSkolkovo Institute of Science and Technology, Skolkovo, 121205 Moscow, RussiaSerbsky National Medical Research Center for Psychiatry and Narcology, Kropotkinsky Lane 23, 119034 Moscow, RussiaSkolkovo Institute of Science and Technology, Skolkovo, 121205 Moscow, RussiaSkolkovo Institute of Science and Technology, Skolkovo, 121205 Moscow, RussiaSkolkovo Institute of Science and Technology, Skolkovo, 121205 Moscow, RussiaRibosome biogenesis is among the founding processes in the cell. During the first stages of ribosome biogenesis, polycistronic precursor of ribosomal RNA passes complex multistage maturation after transcription. Quality control of preribosomal RNA (pre-rRNA) processing is precisely regulated by non-ribosomal proteins and structural features of pre-rRNA molecules, including modified nucleotides. However, many participants of rRNA maturation are still unknown or poorly characterized. We report that RNA m6A methyltransferase Mettl3 interacts with the 5′ external transcribed spacer (5′ETS) of the 47S rRNA precursor and modifies adenosine 196. We demonstrated that Mettl3 knockdown results in the increase of pre-rRNA processing rates, while intracellular amounts of rRNA processing machinery components (U3, U8, U13, U14, and U17 small nucleolar RNA (snoRNA )and fibrillarin, nucleolin, Xrn2, and rrp9 proteins), rRNA degradation rates, and total amount of mature rRNA in the cell stay unchanged. Increased efficacy of pre-rRNA cleavage at A’ and A0 positions led to the decrease of 47S and 45S pre-rRNAs in the cell and increase of mature rRNA amount in the cytoplasm. The newly identified conserved motif DRACH sequence modified by Mettl3 in the 5′-ETS region is found and conserved only in primates, which may suggest participation of m6A196 in quality control of pre-rRNA processing at initial stages demanded by increased complexity of ribosome biogenesis.https://www.mdpi.com/2073-4409/9/4/1061RNA modificationRNA methyltransferaserRNA processing
collection DOAJ
language English
format Article
sources DOAJ
author Olga Sergeeva
Philipp Sergeev
Pavel Melnikov
Tatiana Prikazchikova
Olga Dontsova
Timofei Zatsepin
spellingShingle Olga Sergeeva
Philipp Sergeev
Pavel Melnikov
Tatiana Prikazchikova
Olga Dontsova
Timofei Zatsepin
Modification of Adenosine196 by Mettl3 Methyltransferase in the 5’-External Transcribed Spacer of 47S Pre-rRNA Affects rRNA Maturation
Cells
RNA modification
RNA methyltransferase
rRNA processing
author_facet Olga Sergeeva
Philipp Sergeev
Pavel Melnikov
Tatiana Prikazchikova
Olga Dontsova
Timofei Zatsepin
author_sort Olga Sergeeva
title Modification of Adenosine196 by Mettl3 Methyltransferase in the 5’-External Transcribed Spacer of 47S Pre-rRNA Affects rRNA Maturation
title_short Modification of Adenosine196 by Mettl3 Methyltransferase in the 5’-External Transcribed Spacer of 47S Pre-rRNA Affects rRNA Maturation
title_full Modification of Adenosine196 by Mettl3 Methyltransferase in the 5’-External Transcribed Spacer of 47S Pre-rRNA Affects rRNA Maturation
title_fullStr Modification of Adenosine196 by Mettl3 Methyltransferase in the 5’-External Transcribed Spacer of 47S Pre-rRNA Affects rRNA Maturation
title_full_unstemmed Modification of Adenosine196 by Mettl3 Methyltransferase in the 5’-External Transcribed Spacer of 47S Pre-rRNA Affects rRNA Maturation
title_sort modification of adenosine196 by mettl3 methyltransferase in the 5’-external transcribed spacer of 47s pre-rrna affects rrna maturation
publisher MDPI AG
series Cells
issn 2073-4409
publishDate 2020-04-01
description Ribosome biogenesis is among the founding processes in the cell. During the first stages of ribosome biogenesis, polycistronic precursor of ribosomal RNA passes complex multistage maturation after transcription. Quality control of preribosomal RNA (pre-rRNA) processing is precisely regulated by non-ribosomal proteins and structural features of pre-rRNA molecules, including modified nucleotides. However, many participants of rRNA maturation are still unknown or poorly characterized. We report that RNA m6A methyltransferase Mettl3 interacts with the 5′ external transcribed spacer (5′ETS) of the 47S rRNA precursor and modifies adenosine 196. We demonstrated that Mettl3 knockdown results in the increase of pre-rRNA processing rates, while intracellular amounts of rRNA processing machinery components (U3, U8, U13, U14, and U17 small nucleolar RNA (snoRNA )and fibrillarin, nucleolin, Xrn2, and rrp9 proteins), rRNA degradation rates, and total amount of mature rRNA in the cell stay unchanged. Increased efficacy of pre-rRNA cleavage at A’ and A0 positions led to the decrease of 47S and 45S pre-rRNAs in the cell and increase of mature rRNA amount in the cytoplasm. The newly identified conserved motif DRACH sequence modified by Mettl3 in the 5′-ETS region is found and conserved only in primates, which may suggest participation of m6A196 in quality control of pre-rRNA processing at initial stages demanded by increased complexity of ribosome biogenesis.
topic RNA modification
RNA methyltransferase
rRNA processing
url https://www.mdpi.com/2073-4409/9/4/1061
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