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Cytomegalovirus Late Protein pUL31 Alters Pre-rRNA Expression and Nuclear Organization during Infection
Kristen N Westdorp1, Andrea Sand1, Nathaniel J Moorman2
1Department of Microbiology and Molecular Genetics, Medical College of Wisconsin, Milwaukee, Wisconsin, USA.
Abstract:
The replication cycle of human cytomegalovirus (CMV) leads to drastic reorganization of domains in the host cell nucleus. However, the mechanisms involved and how these domains contribute to infection are not well understood. Our recent studies defining the CMV-induced nuclear proteome identified several viral proteins of unknown functions, including a protein encoded by the UL31 gene. We set out to define the role of UL31 in CMV replication. UL31 is predicted to encode a 74-kDa protein, referred to as pUL31, containing a bipartite nuclear localization signal, an intrinsically disordered region overlapping arginine-rich motifs, and a C-terminal dUTPase-like structure. We observed that pUL31 is expressed with true late kinetics and is localized to nucleolin-containing nuclear domains. However, pUL31 is excluded from the viral nuclear replication center. Nucleolin is a marker of nucleoli, which are membrane-less regions involved in regulating ribosome biosynthesis and cellular stress responses. Other CMV proteins associate with nucleoli, and we demonstrate that pUL31 specifically interacts with the viral protein, pUL76. Coexpression of both proteins altered pUL31 localization and nucleolar organization. During infection, pUL31 colocalizes with nucleolin but not the transcriptional activator, UBF. In the absence of pUL31, CMV fails to reorganize nucleolin and UBF and exhibits a replication defect at a low multiplicity of infection. Finally, we observed that pUL31 is necessary and sufficient to reduce pre-rRNA levels, and this was dependent on the dUTPase-like motif in pUL31. Our studies demonstrate that CMV pUL31 functions in regulating nucleolar biology and contributes to the reorganization of nucleoli during infection.IMPORTANCE Nucleolar biology is important during CMV infection with the nucleolar protein, with nucleolin playing a role in maintaining the architecture of the viral nuclear replication center. However, the extent of CMV-mediated regulation of nucleolar biology is not well established. Proteins within nucleoli regulate ribosome biosynthesis and p53-dependent cellular stress responses that are capable of inducing cell cycle arrest and/or apoptosis, and they are proposed targets for cancer therapies. This study establishes that CMV protein pUL31 is necessary and sufficient to regulate nucleolar biology involving the reorganization of nucleolar proteins. Understanding these processes will help define approaches to stimulate cellular intrinsic stress responses that are capable of inhibiting CMV infection.
Insights
Human cytomegalovirus (CMV) protein pUL31 reorganizes host cell nucleoli, impacting viral replication. This study reveals pUL31
Area of Science:
- Virology
- Cell Biology
- Molecular Biology
Background:
- Human cytomegalovirus (CMV) infection profoundly reorganizes the host cell nucleus.
- Viral proteins involved in nuclear reorganization and their mechanisms remain largely uncharacterized.
- The function of CMV protein pUL31, identified in recent proteomic studies, is unknown.
Purpose of the Study:
- To elucidate the role of the CMV-encoded protein pUL31 in viral replication.
- To investigate the interaction of pUL31 with host cell components, particularly nucleolin.
- To determine the impact of pUL31 on nucleolar structure and function during CMV infection.
Main Methods:
- Expression analysis and subcellular localization of pUL31.
- Co-immunoprecipitation to identify interacting viral proteins.
- Analysis of nucleolar protein (nucleolin, UBF) localization during infection.
- Assessment of CMV replication efficiency in the presence and absence of pUL31.
- Measurement of pre-ribosomal RNA (pre-rRNA) levels.
Main Results:
- pUL31 is a late-expressed viral protein localized to nucleolin-containing nuclear domains but excluded from viral replication centers.
- pUL31 interacts with viral protein pUL76, and their coexpression alters pUL31 localization and nucleolar organization.
- CMV lacking pUL31 fails to reorganize nucleolin and UBF and shows a replication defect at low multiplicity of infection.
- pUL31 is necessary and sufficient to reduce pre-rRNA levels, dependent on its dUTPase-like motif.
Conclusions:
- CMV protein pUL31 plays a critical role in regulating nucleolar biology and reorganizing nucleoli during infection.
- pUL31's function in modulating nucleolar activity is essential for efficient CMV replication.
- Understanding pUL31's role may offer strategies to target cellular stress responses against CMV.
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