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dc.contributor.authorSamolygo, Aleksei-
dc.contributor.authorAthukoralage, Januka S-
dc.contributor.authorGraham, Shirley-
dc.date.accessioned2024-04-23T04:40:30Z-
dc.date.available2024-04-23T04:40:30Z-
dc.date.issued2020-
dc.identifier.otherOER000000817vi
dc.identifier.urihttp://dlib.hust.edu.vn/handle/HUST/24561-
dc.descriptionTài liệu này được phát hành theo giấy phép CC-BY 4.0vi
dc.description.abstractType III CRISPR systems synthesise cyclic oligoadenylate (cOA) second messengers in response to viral infection of bacteria and archaea, potentiating an immune response by binding and activating ancillary effector nucleases such as Csx1. As these effectors are not specific for invading nucleic acids, a prolonged activation can result in cell dormancy or death. To avoid this fate, some archaeal species encode a specialised ring nuclease enzyme (Crn1) to degrade cyclic tetra-adenylate (cA4) and deactivate the ancillary nucleases. Some archaeal viruses and bacteriophage encode a potent ring nuclease anti-CRISPR, AcrIII-1, to rapidly degrade cA4 and neutralise immunity. Homologues of this enzyme (named Crn2) exist in type III CRISPR systems but are uncharacterised. Here we describe an unusual fusion between cA4-activated CRISPR ribonuclease (Csx1) and a cA4-degrading ring nuclease (Crn2) from Marinitoga piezophila. The protein has two binding sites that compete for the cA4 ligand, a canonical cA4-activated ribonuclease activity in the Csx1 domain and a potent cA4 ring nuclease activity in the C-terminal Crn2 domain. The activities of the two constituent enzymes in the fusion protein cooperate to ensure a robust but time-limited cOA-activated ribonuclease activity that is finely tuned to cA4 levels as a second messenger of infection.vi
dc.description.urihttps://www.biorxiv.org/content/10.1101/2020.03.11.987685v1vi
dc.formatPDFvi
dc.language.isoenvi
dc.publisherBiochemical Journalvi
dc.rightsAttribution 3.0 Vietnam*
dc.rights.urihttp://creativecommons.org/licenses/by/3.0/vn/*
dc.subjectcOAvi
dc.subjectCsx1vi
dc.subject.lccQD405vi
dc.titleFuse to defuse: a self-limiting ribonuclease-ring nuclease fusion for type III CRISPR defencevi
dc.typeJournal articlevi
Appears in Collections:OER - Kỹ thuật hóa học; Công nghệ sinh học - Thực phẩm; Công nghệ môi trường

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