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MutT homologue 1 (MTH1) removes N6-methyl-dATP from the dNTP pool
Stockholm University, Faculty of Science, Department of Biochemistry and Biophysics. Lund University, Sweden.
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Number of Authors: 82020 (English)In: Journal of Biological Chemistry, ISSN 0021-9258, E-ISSN 1083-351X, Vol. 295, no 15, p. 4761-4772Article in journal (Refereed) Published
Abstract [en]

MutT homologue 1 (MTH1) removes oxidized nucleotides from the nucleotide pool and thereby prevents their incorporation into the genome and thereby reduces genotoxicity. We previously reported that MTH1 is an efficient catalyst of O6-methyl-dGTP hydrolysis suggesting that MTH1 may also sanitize the nucleotide pool from other methylated nucleotides. We here show that MTH1 efficiently catalyzes the hydrolysis of N6-methyl-dATP to N6-methyl-dAMP and further report that N6-methylation of dATP drastically increases the MTH1 activity. We also observed MTH1 activity with N6-methyl-ATP, albeit at a lower level. We show that N6-methyl-dATP is incorporated into DNA in vivo, as indicated by increased N6-methyl-dA DNA levels in embryos developed from MTH1 knock-out zebrafish eggs microinjected with N6-methyl-dATP compared with noninjected embryos. N6-methyl-dATP activity is present in MTH1 homologues from distantly related vertebrates, suggesting evolutionary conservation and indicating that this activity is important. Of note, N6-methyl-dATP activity is unique to MTH1 among related NUDIX hydrolases. Moreover, we present the structure of N6-methyl-dAMP?bound human MTH1, revealing that the N6-methyl group is accommodated within a hydrophobic active-site subpocket explaining why N6-methyl-dATP is a good MTH1 substrate. N6-methylation of DNA and RNA has been reported to have epigenetic roles and to affect mRNA metabolism. We propose that MTH1 acts in concert with adenosine deaminase-like protein isoform 1 (ADAL1) to prevent incorporation of N6-methyl-(d)ATP into DNA and RNA. This would hinder potential dysregulation of epigenetic control and RNA metabolism via conversion of N6-methyl-(d)ATP to N6-methyl-(d)AMP, followed by ADAL1-catalyzed deamination producing (d)IMP that can enter the nucleotide salvage pathway.

Place, publisher, year, edition, pages
2020. Vol. 295, no 15, p. 4761-4772
Keywords [en]
crystal structure, X-ray crystallography, enzyme catalysis, substrate specificity, enzyme kinetics, nucleoside, nucleotide metabolism, hydrolase, epigenetics, methylation, MutT homologue 1 (MTH1), N6-methyl-dATP, nucleotide hydrolysis, Nudix hydrolase 1 (NUDT1)
National Category
Biological Sciences
Identifiers
URN: urn:nbn:se:su:diva-181859DOI: 10.1074/jbc.RA120.012636ISI: 000526887000001PubMedID: 32144205OAI: oai:DiVA.org:su-181859DiVA, id: diva2:1432512
Available from: 2020-05-27 Created: 2020-05-27 Last updated: 2022-03-23Bibliographically approved

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Scaletti, Emma RoseSarno, AntonioStenmark, PålJemth, Ann-Sofie

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