Proteomics

Dataset Information

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HCMV infection depends on EGLN1-mediated mitochondrial activation to increase dNTP pools for viral DNA replication


ABSTRACT: Human cytomegalovirus (HCMV) is a leading cause of congenital infection and morbidity in immunosuppressed populations. Like all viruses, HCMV is an obligate intracellular parasite that extensively remodels host cellular metabolism to support its replication, yet the precise underlying mechanisms and metabolic vulnerabilities remain poorly understood. Using a novel metabolism-focused screening platform, we identified EGLN prolyl hydroxylase activity as critical for HCMV infection. Our studies revealed that HCMV infection depends on EGLN1, which accumulated in mitochondria during infection. Inhibition of EGLN1 expression blocked HCMV-mediated mitochondrial activation, which in turn prevented the production of the dNTP precursors necessary for dNTP pool expansion and viral DNA replication. Further, pharmacological EGLN inhibition attenuated viral infection in a humanized mouse model. Collectively, these data establish EGLN1 as a critical determinant of mitochondrial metabolic remodeling and virally-induced dNTP generation during HCMV infection, highlighting EGLN1 as a promising novel antiviral therapeutic target.

INSTRUMENT(S):

ORGANISM(S): Homo Sapiens (human)

TISSUE(S): Cell Culture, Fibroblast

DISEASE(S): Human Cytomegalovirus Infection

SUBMITTER: Lucas Simpson  

LAB HEAD: Joshua Munger

PROVIDER: PXD074057 | Pride | 2026-06-01

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
Simpson_24AH1_23-187.msf Msf
Simpson_24AH1_23-187.raw Raw
Simpson_24AH2_23-187.msf Msf
Simpson_24AH2_23-187.raw Raw
Simpson_24AH3_23-187.msf Msf
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Publications

HCMV infection depends on EGLN1-mediated mitochondrial activation to increase dNTP pools for viral DNA replication.

Simpson Lucas A LA   Dunn Diana M DM   Fales Wyatt W   Moore Zachary J ZJ   Ciesla Jessica H JH   Waild Nicole C NC   Raymonda Matthew H MH   Harris Isaac S IS   Munger Joshua J  

Cell reports 20260429 5


Human cytomegalovirus (HCMV) is a leading cause of congenital infection and morbidity in immunosuppressed populations. Like all viruses, HCMV is an obligate intracellular parasite that extensively remodels host cell metabolism to support its replication, yet the precise underlying mechanisms and the potentially associated metabolic vulnerabilities remain poorly understood. Using a metabolism-focused screening platform, we identify EGLN prolyl hydroxylase activity as critical for HCMV infection.  ...[more]

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