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RESEARCH PRODUCT
The Complex Regulatory Role of Cytomegalovirus Nuclear Egress Protein pUL50 in the Production of Infectious Virus
Manfred MarschallSigrun HägeBodo PlachterEva Maria BorstYohann CoutéVictoria PakulskaAnnie AdraitSteffi KrauterUrsula Schlötzer-schrehardtFriedrich HahnNicole Büschersubject
Human cytomegalovirusGene Expression Regulation ViralProteomicsefficiency of infectious virus productionQH301-705.5Nuclear Envelope[SDV]Life Sciences [q-bio]virusesQuantitative proteomicsCytomegalovirusconditional expressionGenome Viralnuclear egress complex (NEC)Virus ReplicationArticleCell LineViral ProteinsCapsidNEC protein pUL50DNA PackagingmedicineHumansddc:610Biology (General)Nuclear poreNuclear membraneregulation of viral replicationGenes Immediate-EarlyCell Nucleusfunctional propertiesChemistryVirionGeneral MedicineFibroblastsmedicine.diseaseCell biologyVesicular transport protein[SDV] Life Sciences [q-bio]Kineticsmedicine.anatomical_structureLytic cycleCapsidhuman cytomegalovirusLamindescription
The regulation of the nucleocytoplasmic release of herpesviral capsids is defined by the process of nuclear egress. Due to their large size, nuclear capsids are unable to traverse via nuclear pores, so that herpesviruses evolved to develop a vesicular transport pathway mediating their transition through both leaflets of the nuclear membrane. This process involves regulatory proteins, which support the local distortion of the nuclear envelope. For human cytomegalovirus (HCMV), the nuclear egress complex (NEC) is determined by the pUL50-pUL53 core that initiates multicomponent assembly with NEC-associated proteins and capsids. Hereby, pUL50 serves as a multi-interacting determinant that recruits several viral and cellular factors by direct and indirect contacts. Recently, we generated an ORF-UL50-deleted recombinant HCMV in pUL50-complementing cells and obtained first indications of putative additional functions of pUL50. In this study, we produced purified ΔUL50 particles under both complementing (ΔUL50C) and non-complementing (ΔUL50N) conditions and performed a phenotypical characterization. Findings were as follows: (i) ΔUL50N particle preparations exhibited a clear replicative defect in qPCR-based infection kinetics compared to ΔUL50C particles
year | journal | country | edition | language |
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2021-11-11 |