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Neuron-specific activation of murine cytomegalovirus early gene e1 promoter in transgenic mice.


ABSTRACT: The brain is the main target in congenital cytomegalovirus (CMV) infection and immunocompromised patients. No definite evidence that a CMV has special affinity for the central nervous system (CNS) has been published. Here, we generated transgenic mice with an e1 promoter/enhancer region connected to the reporter gene lacZ. Surprisingly, expression of the transgene was completely restricted to the CNS in all lines of transgenic mice. The transgene was expressed in subpopulation of neurons in the cerebral cortex, hippocampus, diencephalon, brainstem, cerebellum, and spinal cord in all of the lines. Non-neuronal cells in the CNS were negative for transgene expression. Activation of the transgene was first observed in neurons of mesencephalon in late gestation, and then the number of positive neurons increased in various parts of the brain as development proceeded. Upon infection of the transgenic mouse brains with MCMV, the location of the activated neurons became more extensive, and the number of such neurons increased. These results suggest that there are host factor(s) that directly activate the MCMV early gene promoter in neurons. This neuron-specific activation may be associated with persistent infection in the brain and may be responsible for the neuronal dysfunction and neuronal cell loss caused by CMV infection.

SUBMITTER: Arai Y 

PROVIDER: S-EPMC1868196 | biostudies-literature | 2003 Aug

REPOSITORIES: biostudies-literature

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Neuron-specific activation of murine cytomegalovirus early gene e1 promoter in transgenic mice.

Arai Yoshifumi Y   Ishiwata Mizuho M   Baba Satoshi S   Kawasaki Hideya H   Kosugi Isao I   Li Ren-Yong RY   Tsuchida Takashi T   Miura Katsutoshi K   Tsutsui Yoshihiro Y  

The American journal of pathology 20030801 2


The brain is the main target in congenital cytomegalovirus (CMV) infection and immunocompromised patients. No definite evidence that a CMV has special affinity for the central nervous system (CNS) has been published. Here, we generated transgenic mice with an e1 promoter/enhancer region connected to the reporter gene lacZ. Surprisingly, expression of the transgene was completely restricted to the CNS in all lines of transgenic mice. The transgene was expressed in subpopulation of neurons in the  ...[more]

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