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dc.contributor.authorAriza, A
dc.contributor.authorLiu, Q
dc.contributor.authorCowieson, N
dc.contributor.authorAhel, I
dc.contributor.authorFilippov, DV
dc.contributor.authorRack, JGM
dc.date.accessioned2024-09-13T14:55:08Z
dc.date.issued2024-09-11
dc.date.updated2024-09-13T14:04:51Z
dc.description.abstractDynamic ADP-ribosylation signalling is a crucial pathway that controls fundamental cellular processes, in particular, the response to cellular stresses such as DNA damage, reactive oxygen species and infection. In some pathogenic microbes the response to oxidative stress is controlled by a SirTM/zinc-containing macrodomain (Zn-Macro) pair responsible for establishment and removal of the modification, respectively. Targeting this defence mechanism against the host’s innate immune response may lead to novel approaches to support the fight against emerging antimicrobial resistance. Earlier studies suggested that Zn-Macros play a key role in the activation of this defence. Therefore, we used phylogenetic, biochemical, and structural approaches to elucidate the functional properties of these enzymes. Using the substrate mimetic asparagine-ADP-ribose as well as the ADP-ribose product, we characterise the catalytic role of the zinc ion in the removal of the ADP-ribosyl modification. Furthermore, we determined structural properties that contribute to substrate selectivity within the different Zn-Macro branches. Together, our data not only give new insights into the Zn-Macro family but also highlight their distinct features that may be exploited for the development of future therapies.en_GB
dc.description.sponsorshipMedical Research Council (MRC)en_GB
dc.description.sponsorshipChina Scholarship Councilen_GB
dc.format.extent107770-107770
dc.identifier.citationPublished online 11 September 2024en_GB
dc.identifier.doihttps://doi.org/10.1016/j.jbc.2024.107770
dc.identifier.grantnumberMR/N006364/2en_GB
dc.identifier.grantnumberMR/V033417/1en_GB
dc.identifier.urihttp://hdl.handle.net/10871/137441
dc.identifierORCID: 0000-0001-8341-6439 (Rack, Johannes Gregor Matthias)
dc.identifierScopusID: 56715439800 (Rack, Johannes Gregor Matthias)
dc.language.isoenen_GB
dc.publisherElsevier / American Society for Biochemistry and Molecular Biologyen_GB
dc.rights© 2024 THE AUTHORS. Published by Elsevier Inc on behalf of American Society for Biochemistry and Molecular Biology. User License: Creative Commons Attribution (CC BY 4.0)en_GB
dc.subjectLipoylationen_GB
dc.subjectPost‐translational modification (PTM)en_GB
dc.subjectMetalloenzymeen_GB
dc.subjectX-ray crystallographyen_GB
dc.subjectsmall‐angle X‐ray scattering (SAXS)en_GB
dc.titleEvolutionary and molecular basis of ADP-ribosylation reversal by zinc-dependent macrodomainsen_GB
dc.typeArticleen_GB
dc.date.available2024-09-13T14:55:08Z
dc.identifier.issn0021-9258
exeter.article-number107770
dc.descriptionThis is the author accepted manuscript. The final version is available from Elsevier via the DOI in this recorden_GB
dc.descriptionData availability: All collected atomic coordinates and structure factors have been deposited in the Protein Data Bank under accession codes 8RSI (MorMacro), 8RSJ (MorMacro:ADPr), 8RSK (MorMacro:Asn-ADPr), 8RSL (SauMacro), 8RSM (SpyMacro:ADPr), and 8RSN (Foc1Mfs1). SAXS profiles and pair distribution functions were uploaded to the SASBDB and are available under the accession codes SASDTX8 (lipoyl-SpyGcvH-L), SASDTY8 (SpyMacro), and SASDTZ8 (SpyMacro:lipoyl-SpyGcvH-L). Genomic sequences obtained in this study were deposited in GenBank under the accession numbers OR133610 (AteMfs1), OR133608 (Foc1Mfs1), OR133609 (PnpMfs1) and OR136504 (Foc1MacroD2).en_GB
dc.identifier.eissn1083-351X
dc.identifier.journalJournal of Biological Chemistryen_GB
dc.relation.ispartofJournal of Biological Chemistry
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/en_GB
dcterms.dateAccepted2024-08-27
rioxxterms.versionAMen_GB
rioxxterms.licenseref.startdate2024-09-11
rioxxterms.typeJournal Article/Reviewen_GB
refterms.dateFCD2024-09-13T14:48:20Z
refterms.versionFCDAM
refterms.dateFOA2024-09-13T14:55:13Z
refterms.panelAen_GB
refterms.dateFirstOnline2024-09-11
exeter.rights-retention-statementNo


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© 2024 THE AUTHORS. Published by Elsevier Inc on behalf of American Society for Biochemistry and Molecular Biology.
User License: Creative Commons Attribution (CC BY 4.0)
Except where otherwise noted, this item's licence is described as © 2024 THE AUTHORS. Published by Elsevier Inc on behalf of American Society for Biochemistry and Molecular Biology. User License: Creative Commons Attribution (CC BY 4.0)