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Updated: May 5, 2026

Isolation of Viral Replication Compartment-enriched Sub-nuclear Fractions from Adenovirus-infected Normal Human Cells
Published on: November 12, 2015
SPOC1-mediated antiviral host cell response is antagonized early in human adenovirus type 5 infection
Sabrina Schreiner1, Sarah Kinkley, Carolin Bürck
1Heinrich Pette Institute, Leibniz Institute for Experimental Virology, Hamburg, Germany.
Abstract:
Little is known about immediate phases after viral infection and how an incoming viral genome complex counteracts host cell defenses, before the start of viral gene expression. Adenovirus (Ad) serves as an ideal model, since entry and onset of gene expression are rapid and highly efficient, and mechanisms used 24-48 hours post infection to counteract host antiviral and DNA repair factors (e.g. p53, Mre11, Daxx) are well studied. Here, we identify an even earlier host cell target for Ad, the chromatin-associated factor and epigenetic reader, SPOC1, recently found recruited to double strand breaks, and playing a role in DNA damage response. SPOC1 co-localized with viral replication centers in the host cell nucleus, interacted with Ad DNA, and repressed viral gene expression at the transcriptional level. We discovered that this SPOC1-mediated restriction imposed upon Ad growth is relieved by its functional association with the Ad major core protein pVII that enters with the viral genome, followed by E1B-55K/E4orf6-dependent proteasomal degradation of SPOC1. Mimicking removal of SPOC1 in the cell, knock down of this cellular restriction factor using RNAi techniques resulted in significantly increased Ad replication, including enhanced viral gene expression. However, depletion of SPOC1 also reduced the efficiency of E1B-55K transcriptional repression of cellular promoters, with possible implications for viral transformation. Intriguingly, not exclusive to Ad infection, other human pathogenic viruses (HSV-1, HSV-2, HIV-1, and HCV) also depleted SPOC1 in infected cells. Our findings provide a general model for how pathogenic human viruses antagonize intrinsic SPOC1-mediated antiviral responses in their host cells. A better understanding of viral entry and early restrictive functions in host cells should provide new perspectives for developing antiviral agents and therapies. Conversely, for Ad vectors used in gene therapy, counteracting mechanisms eradicating incoming viral DNA would increase Ad vector efficacy and safety for the patient.
Insights
Viruses like adenovirus target SPOC1, an epigenetic reader, to overcome early host defenses. Viral proteins then degrade SPOC1, enabling viral replication and gene expression.
Area of Science:
- Virology
- Epigenetics
- Host-Pathogen Interactions
Background:
- Early host cell defenses against viral infection remain poorly understood.
- Adenovirus (Ad) is a model for rapid viral entry and gene expression.
- Known Ad mechanisms target host factors like p53 and Mre11 late in infection.
Purpose of the Study:
- To identify early host cell targets of adenovirus infection.
- To elucidate the role of SPOC1 in restricting viral replication.
- To understand how viruses counteract SPOC1-mediated antiviral responses.
Main Methods:
- Co-localization studies to observe SPOC1 and viral replication centers.
- Interaction assays to confirm SPOC1 binding to viral DNA.
- RNA interference (RNAi) to deplete SPOC1 and assess viral replication.
- Proteasomal degradation assays to study SPOC1 turnover.
Main Results:
- SPOC1, a chromatin-associated factor, targets incoming adenovirus DNA and represses viral gene expression.
- Adenovirus protein pVII interacts with SPOC1, and viral proteins E1B-55K/E4orf6 mediate SPOC1 proteasomal degradation.
- SPOC1 depletion enhances Ad replication and gene expression but impairs viral transcriptional repression of host genes.
- SPOC1 depletion is observed in cells infected with other viruses, including HSV-1, HSV-2, HIV-1, and HCV.
Conclusions:
- SPOC1 acts as an early intrinsic antiviral factor that restricts viral gene expression and replication.
- Pathogenic viruses have evolved mechanisms to antagonize SPOC1-mediated defenses.
- Targeting SPOC1 offers potential for novel antiviral therapies and improving adenovirus vector efficacy in gene therapy.
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