Bacterial developmental checkpoint that directly monitors cell surface morphogenesis

dc.contributor.authorDelerue, Thomasen
dc.contributor.authorAnantharaman, Viveken
dc.contributor.authorGilmore, Michael C.en
dc.contributor.authorPopham, David L.en
dc.contributor.authorCava, Felipeen
dc.contributor.authorAravind, L.en
dc.contributor.authorRamamurthi, Kumaran S.en
dc.date.accessioned2024-01-18T13:51:50Zen
dc.date.available2024-01-18T13:51:50Zen
dc.date.issued2022-02-07en
dc.description.abstractBacillus subtilis spores are encased in two concentric shells: an outer proteinaceous “coat” and an inner peptidoglycan “cortex,” separated by a membrane. Cortex assembly depends on coat assembly initiation, but how cells achieve this coordination across the membrane is unclear. Here, we report that the protein SpoVID monitors the polymerization state of the coat basement layer via an extension to a functional intracellular LysM domain that arrests sporulation when coat assembly is initiated improperly. Whereas extracellular LysM domains bind mature peptidoglycan, SpoVID LysM binds to the membrane-bound lipid II peptidoglycan precursor. We propose that improper coat assembly exposes the SpoVID LysM domain, which then sequesters lipid II and prevents cortex assembly. SpoVID defines a widespread group of firmicute proteins with a characteristic N-terminal domain and C-terminal peptidoglycan-binding domains that might combine coat and cortex assembly roles to mediate a developmental checkpoint linking the morphogenesis of two spatially separated supramolecular structures.en
dc.description.versionAccepted versionen
dc.format.extentPages 344-360en
dc.format.extent24 page(s)en
dc.format.mimetypeapplication/pdfen
dc.identifier.doihttps://doi.org/10.1016/j.devcel.2021.12.021en
dc.identifier.eissn1878-1551en
dc.identifier.issn1534-5807en
dc.identifier.issue3en
dc.identifier.orcidPopham, David [0000-0002-2614-143X]en
dc.identifier.otherS1534-5807(21)01041-8 (PII)en
dc.identifier.pmid35065768en
dc.identifier.urihttps://hdl.handle.net/10919/117393en
dc.identifier.volume57en
dc.language.isoenen
dc.publisherCell Pressen
dc.relation.urihttps://www.ncbi.nlm.nih.gov/pubmed/35065768en
dc.rightsIn Copyrighten
dc.rights.urihttp://rightsstatements.org/vocab/InC/1.0/en
dc.subjectClostridiumen
dc.subjectClostridium difficileen
dc.subjectDivIVAen
dc.subjectFtsZen
dc.subjectMreBen
dc.subjectSPOCS domainen
dc.subjectSpindle assembly checkpointen
dc.subjectSpoIVAen
dc.subjectSpoVMen
dc.subjectsporulationen
dc.subject.meshCell Membraneen
dc.subject.meshBacillus subtilisen
dc.subject.meshSpores, Bacterialen
dc.subject.meshPeptidoglycanen
dc.subject.meshBacterial Proteinsen
dc.subject.meshAmino Acid Sequenceen
dc.subject.meshMutationen
dc.subject.meshModels, Biologicalen
dc.subject.meshAdenosine Triphosphatasesen
dc.subject.meshPolymerizationen
dc.subject.meshProtein Domainsen
dc.titleBacterial developmental checkpoint that directly monitors cell surface morphogenesisen
dc.title.serialDevelopmental Cellen
dc.typeArticle - Refereeden
dc.type.dcmitypeTexten
dc.type.otherArticleen
dc.type.otherJournalen
dcterms.dateAccepted2021-12-20en
pubs.organisational-group/Virginia Techen
pubs.organisational-group/Virginia Tech/Scienceen
pubs.organisational-group/Virginia Tech/Science/Biological Sciencesen
pubs.organisational-group/Virginia Tech/All T&R Facultyen
pubs.organisational-group/Virginia Tech/Science/COS T&R Facultyen

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