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Dissecting Host-virus Interaction in Lytic Replication of a Model Herpesvirus
Published on: October 7, 2011
Genome replication and postencapsidation functions mapping to the nonstructural gene restrict the host range of a
M P Rubio1, S Guerra, J M Almendral
1Centro de Biología Molecular "Severo Ochoa" (Universidad Autónoma de Madrid-Consejo Superior de Investigaciones Científicas), 28049 Cantoblanco, Madrid, Spain.
Abstract:
The infection outcome of the Parvoviridae largely relies on poorly characterized intracellular factors modulated by proliferation, differentiation, and transformation of host cells. We have studied the interactions displayed by the highly homologous p and i strains of the murine parvovirus minute virus of mice (MVM), with a series of transformed cells of rat (C6) and human (U373, U87, SW1088, SK-N-SH) nervous system origin, seeking for molecular mechanisms governing parvovirus host range. The MVMp infection of C6 and U373 cells was cytotoxic and productive, whereas the other nervous cells behaved essentially as resistant to this virus. In contrast, MVMi did not complete its life cycle in any of the human nervous cells, though it efficiently killed the astrocytic tumor cells by two types of nonproductive infections: (i) normal synthesis of all viral macromolecules with a late defect in infectious virion maturation and release to the medium in U373; and (ii) high levels of accumulation of the full set of viral messenger RNAs and of both nonstructural (NS-1) and structural (VP-1 and VP-2) proteins, under a very low viral DNA amplification, in U87 and SW1088 cells. Further analyses showed that U87 was permissive for nuclear transport of MVMi proteins, leading to efficient assembly of empty viral capsids with a normal phosphorylation and VP1-to-VP2 ratio. The DNA amplification blockade in U87 occurred after conversion of the incoming MVMi genome to the monomeric replicative form, and it operated independently of the delivery pathway used by the viral particle, since it could not be overcome by transfection with cloned infectious viral DNA. Significantly, a chimeric MVMi virus harboring the coding region of the nonstructural (NS) gene replaced with that of MVMp showed a similar pattern of restriction in U87 cells as the parental MVMi virus, and it attained in U373 cultures an infectious titer above 100-fold higher under equal levels of DNA amplification and genome encapsidation. The results suggest that the activity of complexes formed by the NS polypeptides and recruited cellular factors restrict parvovirus DNA amplification in a cell type-dependent manner and that NS functions may in addition determine MVM host range acting at postencapsidation steps of viral maturation. These data are relevant for understanding the increased multiplication of autonomous parvovirus in some transformed cells and the transduction efficacy of nonreplicative parvoviral vectors, as well as a general remark on the mechanisms by which NS genes may regulate viral tropism and pathogenesis.
Insights
Murine parvovirus (MVM) host range depends on intracellular factors. The nonstructural (NS) gene products and host cell interactions dictate MVM DNA amplification and viral maturation, influencing pathogenesis.
Area of Science:
- Virology
- Molecular Biology
- Cell Biology
Background:
- Parvoviridae infection outcomes are influenced by poorly understood intracellular factors.
- Host cell proliferation, differentiation, and transformation significantly modulate these factors.
- Understanding parvovirus-host interactions is crucial for viral pathogenesis and vector development.
Purpose of the Study:
- To investigate the molecular mechanisms governing parvovirus host range.
- To study interactions between minute virus of mice (MVM) strains (MVMp and MVMi) and transformed nervous system cells.
- To identify cellular factors and viral components that restrict parvovirus replication.
Main Methods:
- Infection of various rat and human nervous system-derived cell lines with MVMp and MVMi.
- Analysis of viral replication, protein synthesis, DNA amplification, and virion maturation.
- Construction and testing of a chimeric MVM virus with a modified NS gene.
Main Results:
- MVMp was cytotoxic and productive in C6 and U373 cells, but resistant in others.
- MVMi showed nonproductive infections in human cells, with defects in virion maturation or DNA amplification.
- A chimeric MVMi virus demonstrated restricted replication in U87 cells, similar to parental MVMi.
- Chimeric virus showed enhanced infectious titer in U373 cells compared to parental MVMi.
Conclusions:
- Cell type-specific intracellular factors, particularly those involving NS polypeptides and host cell factors, restrict parvovirus DNA amplification.
- NS functions play a critical role in determining MVM host range, potentially acting at post-encapsidation steps.
- These findings are relevant for understanding parvovirus multiplication in transformed cells and the efficacy of parvoviral vectors.
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