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Arabidopsis thaliana NudiXes have RNA-decapping activity

Recent discoveries of various noncanonical RNA caps, such as dinucleoside polyphosphates (Np(n)N), coenzyme A (CoA), and nicotinamide adenine dinucleotide (NAD) in all domains of life have led to a revision of views on RNA cap function and metabolism. Enzymes from the NudiX family capable of hydroly...

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Autores principales: Mititelu, Maria-Bianca, Hudeček, Oldřich, Gozdek, Agnieszka, Benoni, Roberto, Nešuta, Ondřej, Krasnodębski, Szymon, Kufel, Joanna, Cahová, Hana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2023
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9994101/
https://www.ncbi.nlm.nih.gov/pubmed/36908703
http://dx.doi.org/10.1039/d2cb00213b
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author Mititelu, Maria-Bianca
Hudeček, Oldřich
Gozdek, Agnieszka
Benoni, Roberto
Nešuta, Ondřej
Krasnodębski, Szymon
Kufel, Joanna
Cahová, Hana
author_facet Mititelu, Maria-Bianca
Hudeček, Oldřich
Gozdek, Agnieszka
Benoni, Roberto
Nešuta, Ondřej
Krasnodębski, Szymon
Kufel, Joanna
Cahová, Hana
author_sort Mititelu, Maria-Bianca
collection PubMed
description Recent discoveries of various noncanonical RNA caps, such as dinucleoside polyphosphates (Np(n)N), coenzyme A (CoA), and nicotinamide adenine dinucleotide (NAD) in all domains of life have led to a revision of views on RNA cap function and metabolism. Enzymes from the NudiX family capable of hydrolyzing a polyphosphate backbone attached to a nucleoside are the strongest candidates for degradation of noncanonically capped RNA. The model plant organism Arabidopsis thaliana encodes as many as 28 NudiX enzymes. For most of them, only in vitro substrates in the form of small molecules are known. In our study, we focused on four A. thaliana NudiX enzymes (AtNUDT6, AtNUDT7, AtNUDT19 and AtNUDT27), and we studied whether these enzymes can cleave RNA capped with Np(n)Ns (Ap(2–5)A, Gp(3–4)G, Ap(3–5)G, m(7)Gp(3)G, m(7)Gp(3)A), CoA, ADP-ribose, or NAD(H). While AtNUDT19 preferred NADH-RNA over other types of capped RNA, AtNUDT6 and AtNUDT7 preferentially cleaved Ap(4)A-RNA. The most powerful decapping enzyme was AtNUDT27, which cleaved almost all types of capped RNA at a tenfold lower concentration than the other enzymes. We also compared cleavage efficiency of each enzyme on free small molecules with RNA capped with corresponding molecules. We found that AtNUDT6 prefers free Ap(4)A, while AtNUDT7 preferentially cleaved Ap(4)A-RNA. These findings show that NudiX enzymes may act as RNA-decapping enzymes in A. thaliana and that other noncanonical RNA caps such as Ap(4)A and NADH should be searched for in plant RNA.
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spelling pubmed-99941012023-03-09 Arabidopsis thaliana NudiXes have RNA-decapping activity Mititelu, Maria-Bianca Hudeček, Oldřich Gozdek, Agnieszka Benoni, Roberto Nešuta, Ondřej Krasnodębski, Szymon Kufel, Joanna Cahová, Hana RSC Chem Biol Chemistry Recent discoveries of various noncanonical RNA caps, such as dinucleoside polyphosphates (Np(n)N), coenzyme A (CoA), and nicotinamide adenine dinucleotide (NAD) in all domains of life have led to a revision of views on RNA cap function and metabolism. Enzymes from the NudiX family capable of hydrolyzing a polyphosphate backbone attached to a nucleoside are the strongest candidates for degradation of noncanonically capped RNA. The model plant organism Arabidopsis thaliana encodes as many as 28 NudiX enzymes. For most of them, only in vitro substrates in the form of small molecules are known. In our study, we focused on four A. thaliana NudiX enzymes (AtNUDT6, AtNUDT7, AtNUDT19 and AtNUDT27), and we studied whether these enzymes can cleave RNA capped with Np(n)Ns (Ap(2–5)A, Gp(3–4)G, Ap(3–5)G, m(7)Gp(3)G, m(7)Gp(3)A), CoA, ADP-ribose, or NAD(H). While AtNUDT19 preferred NADH-RNA over other types of capped RNA, AtNUDT6 and AtNUDT7 preferentially cleaved Ap(4)A-RNA. The most powerful decapping enzyme was AtNUDT27, which cleaved almost all types of capped RNA at a tenfold lower concentration than the other enzymes. We also compared cleavage efficiency of each enzyme on free small molecules with RNA capped with corresponding molecules. We found that AtNUDT6 prefers free Ap(4)A, while AtNUDT7 preferentially cleaved Ap(4)A-RNA. These findings show that NudiX enzymes may act as RNA-decapping enzymes in A. thaliana and that other noncanonical RNA caps such as Ap(4)A and NADH should be searched for in plant RNA. RSC 2023-01-09 /pmc/articles/PMC9994101/ /pubmed/36908703 http://dx.doi.org/10.1039/d2cb00213b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Mititelu, Maria-Bianca
Hudeček, Oldřich
Gozdek, Agnieszka
Benoni, Roberto
Nešuta, Ondřej
Krasnodębski, Szymon
Kufel, Joanna
Cahová, Hana
Arabidopsis thaliana NudiXes have RNA-decapping activity
title Arabidopsis thaliana NudiXes have RNA-decapping activity
title_full Arabidopsis thaliana NudiXes have RNA-decapping activity
title_fullStr Arabidopsis thaliana NudiXes have RNA-decapping activity
title_full_unstemmed Arabidopsis thaliana NudiXes have RNA-decapping activity
title_short Arabidopsis thaliana NudiXes have RNA-decapping activity
title_sort arabidopsis thaliana nudixes have rna-decapping activity
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9994101/
https://www.ncbi.nlm.nih.gov/pubmed/36908703
http://dx.doi.org/10.1039/d2cb00213b
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