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Use of In vivo Imaging to Monitor the Progression of Experimental Mouse Cytomegalovirus Infection in Neonates
Published on: July 6, 2013
A novel human cytomegalovirus locus modulates cell type-specific outcomes of infection
Mahadevaiah Umashankar1, Alex Petrucelli, Louis Cicchini
1BIO5 Institute, The University of Arizona, Tucson, Arizona, United States of America.
Abstract:
Clinical strains of HCMV encode 20 putative ORFs within a region of the genome termed ULb' that are postulated to encode functions related to persistence or immune evasion. We have previously identified ULb'-encoded pUL138 as necessary, but not sufficient, for HCMV latency in CD34+ hematopoietic progenitor cells (HPCs) infected in vitro. pUL138 is encoded on polycistronic transcripts that also encode 3 additional proteins, pUL133, pUL135, and pUL136, collectively comprising the UL133-UL138 locus. This work represents the first characterization of these proteins and identifies a role for this locus in infection. Similar to pUL138, pUL133, pUL135, and pUL136 are integral membrane proteins that partially co-localized with pUL138 in the Golgi during productive infection in fibroblasts. As expected of ULb' sequences, the UL133-UL138 locus was dispensable for replication in cultured fibroblasts. In CD34+ HPCs, this locus suppressed viral replication in HPCs, an activity attributable to both pUL133 and pUL138. Strikingly, the UL133-UL138 locus was required for efficient replication in endothelial cells. The association of this locus with three context-dependent phenotypes suggests an exciting role for the UL133-UL138 locus in modulating the outcome of viral infection in different contexts of infection. Differential profiles of protein expression from the UL133-UL138 locus correlated with the cell-type dependent phenotypes associated with this locus. We extended our in vitro findings to analyze viral replication and dissemination in a NOD-scid IL2Rγ(c) (null)-humanized mouse model. The UL133-UL138(NULL) virus exhibited an increased capacity for replication and/or dissemination following stem cell mobilization relative to the wild-type virus, suggesting an important role in viral persistence and spread in the host. As pUL133, pUL135, pUL136, and pUL138 are conserved in virus strains infecting higher order primates, but not lower order mammals, the functions encoded likely represent host-specific viral adaptations.
Insights
The UL133-UL138 locus in human cytomegalovirus (HCMV) is crucial for viral persistence and immune evasion. This study reveals its context-dependent roles in regulating viral replication across different cell types and in vivo.
Area of Science:
- Virology
- Molecular Biology
- Immunology
Background:
- Human cytomegalovirus (HCMV) clinical strains possess a unique genomic region, ULb', encoding proteins involved in persistence and immune evasion.
- The ULb'-encoded protein pUL138 is known to be essential for HCMV latency in hematopoietic progenitor cells (HPCs).
- pUL138 is part of a polycistronic transcript also encoding pUL133, pUL135, and pUL136, forming the UL133-UL138 locus.
Purpose of the Study:
- To characterize the proteins encoded by the UL133-UL138 locus and elucidate their function in HCMV infection.
- To investigate the role of the UL133-UL138 locus in viral replication and latency across different cell types.
- To evaluate the in vivo significance of the UL133-UL138 locus in viral persistence and dissemination.
Main Methods:
- Characterization of pUL133, pUL135, pUL136, and pUL138 as integral membrane proteins.
- Analysis of protein co-localization in Golgi during productive infection in fibroblasts.
- Assessment of viral replication in CD34+ HPCs and endothelial cells.
- In vivo studies using a NOD-scid IL2Rγ(c)(null) humanized mouse model to analyze viral replication and dissemination.
Main Results:
- The UL133-UL138 locus is dispensable for HCMV replication in fibroblasts but suppresses replication in CD34+ HPCs, with contributions from both pUL133 and pUL138.
- The locus is essential for efficient replication in endothelial cells, indicating context-dependent functions.
- A UL133-UL138 null virus showed increased replication and/or dissemination in a humanized mouse model, highlighting its role in viral persistence and spread.
Conclusions:
- The UL133-UL138 locus plays a critical, context-dependent role in modulating HCMV infection outcomes.
- Differential expression of these proteins correlates with cell-type specific phenotypes.
- The conserved nature of these proteins in higher primates suggests they are host-specific adaptations for viral persistence and immune evasion.
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