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Differential effects on the survival of neuronal and non-neuronal cells after infection by herpes simplex virus type 1 mutants.

作者信息

Garrido J J, Carnicero E, Lim F, Schimmang T

机构信息

Institute for Biology and Molecular Genetics, University of Valladolid, CSIC, Department of Biochemistry, Molecular Biology and Physiology, Faculty of Medicine, Spain.

出版信息

J Neurovirol. 1999 Jun;5(3):280-8. doi: 10.3109/13550289909015814.

DOI:10.3109/13550289909015814
PMID:10414518
Abstract

Replication-defective mutants of herpes simplex virus type 1 (HSV-1) are powerful tools to transfer genes into postmitotic neurons and show promise for gene therapy protocols in vivo. To evaluate the efficacy and safety of these vectors for the treatment of deafness we infected dissociated cochlear ganglia with HSV mutants defective in the immediate early genes IE 2 (5dl1.2) or IE 3 (d120). Our results reveal striking differences in the survival of neuronal and non-neuronal cells caused by these mutants. Surprisingly, cochlear neurons infected with 5dl1.2 at various concentrations show a significant increase in survival after 2 days in culture. In contrast, many non-neuronal cells undergo apoptosis reducing cell number to less than 50%. In both neuronal and non-neuronal cell types we also observe a population of cells with important changes in morphology. Analysis of dissociated cochlear ganglia infected with d120 reveals a decrease of neuronal survival, whereas non-neuronal cells were almost unaffected. To further characterize and compare the effects of 5dl1.2 and d120 we transduced central nervous system-derived cell types including cortical neurons and astrocytes. Similarly, as observed for cochlear neurons, infection with 5dl1.2 results in increased survival of cortical neurons, whereas d120 shows cytotoxic effects. Survival of astrocytes is equally reduced by both HSV deletion mutants. We conclude that HSV-1 mutants defective in immediate early genes cause very distinct cytopathic phenotypes depending on the cellular context. Possible reasons for these differences, like various patterns of cellular and viral gene expression, and the implications for the use of HSV-1 vectors for gene transfer are discussed.

摘要

相似文献

1
Differential effects on the survival of neuronal and non-neuronal cells after infection by herpes simplex virus type 1 mutants.
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2
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Multiple immediate-early gene-deficient herpes simplex virus vectors allowing efficient gene delivery to neurons in culture and widespread gene delivery to the central nervous system in vivo.多种立即早期基因缺陷型单纯疱疹病毒载体可实现高效的基因传递至培养中的神经元,并在体内广泛地将基因传递至中枢神经系统。
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Long-term persistence of defective HSV-1 vectors in the rat brain is demonstrated by reactivation of vector gene expression.载体基因表达的重新激活证明了缺陷型单纯疱疹病毒1型载体在大鼠脑中的长期存留。
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C-terminal trans-activation sub-region of VP16 is uniquely required for forskolin-induced herpes simplex virus type 1 reactivation from quiescently infected-PC12 cells but not for replication in neuronally differentiated-PC12 cells.
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