Herpesvirus infections can frequently lead to acute inflammation, yet the mechanisms regulating this event remain poorly understood. In order to determine some of the immunological mechanisms regulated by human herpesvirus infections, we studied the gene expression profile of lymphocytes infected with human herpesvirus 6 (HHV-6) by using a novel immunomicroarray. Our nylon-based immunomicroarray contained more than 1,150 immune response-related genes and was highly consistent between experiments. Experimentally, we found that independently of the HHV-6 strain used to infect T cells, multiple proinflammatory genes were increased and anti-inflammatory genes were decreased at the mRNA and protein levels. HHV-6 strains A and B increased expression of the genes for interleukin-18 (IL-18), the IL-2 receptor, members of the tumor necrosis factor alpha superfamily receptors, mitogen-activated protein kinase, and Janus kinase signaling proteins. As reported previously, CD4 protein levels were also increased significantly. Specific type 2 cytokines, including IL-10, its receptor, and IL-14, were downregulated by HHV-6 infection and, interestingly, amyloid precursor proteins and type 1 and 2 presenilins. Thus, T cells respond to HHV-6 infection by inducing a type 1 immune response that may play a significant role in the development and progression of diseases associated with HHV-6, including pediatric, hematologic, transplant, and neurologic disorders.

Gene expression profile of herpesvirus-infected T cells obtained using immunomicroarrays: induction of proinflammatory mechanisms / Mayne, M.; Cheadle, C.; Soldan, S. S. S.; Cermelli, Claudio; Yamano, Y.; Akhyani, N.; Nagel, J. E.; Taub, D. D.; Becker, K. G.; Jacobson, S.. - In: JOURNAL OF VIROLOGY. - ISSN 0022-538X. - STAMPA. - 75:23(2001), pp. 11641-11650. [10.1128/JVI.75.23.11641-11650.2001]

Gene expression profile of herpesvirus-infected T cells obtained using immunomicroarrays: induction of proinflammatory mechanisms.

CERMELLI, Claudio;
2001

Abstract

Herpesvirus infections can frequently lead to acute inflammation, yet the mechanisms regulating this event remain poorly understood. In order to determine some of the immunological mechanisms regulated by human herpesvirus infections, we studied the gene expression profile of lymphocytes infected with human herpesvirus 6 (HHV-6) by using a novel immunomicroarray. Our nylon-based immunomicroarray contained more than 1,150 immune response-related genes and was highly consistent between experiments. Experimentally, we found that independently of the HHV-6 strain used to infect T cells, multiple proinflammatory genes were increased and anti-inflammatory genes were decreased at the mRNA and protein levels. HHV-6 strains A and B increased expression of the genes for interleukin-18 (IL-18), the IL-2 receptor, members of the tumor necrosis factor alpha superfamily receptors, mitogen-activated protein kinase, and Janus kinase signaling proteins. As reported previously, CD4 protein levels were also increased significantly. Specific type 2 cytokines, including IL-10, its receptor, and IL-14, were downregulated by HHV-6 infection and, interestingly, amyloid precursor proteins and type 1 and 2 presenilins. Thus, T cells respond to HHV-6 infection by inducing a type 1 immune response that may play a significant role in the development and progression of diseases associated with HHV-6, including pediatric, hematologic, transplant, and neurologic disorders.
2001
75
23
11641
11650
Gene expression profile of herpesvirus-infected T cells obtained using immunomicroarrays: induction of proinflammatory mechanisms / Mayne, M.; Cheadle, C.; Soldan, S. S. S.; Cermelli, Claudio; Yamano, Y.; Akhyani, N.; Nagel, J. E.; Taub, D. D.; Becker, K. G.; Jacobson, S.. - In: JOURNAL OF VIROLOGY. - ISSN 0022-538X. - STAMPA. - 75:23(2001), pp. 11641-11650. [10.1128/JVI.75.23.11641-11650.2001]
Mayne, M.; Cheadle, C.; Soldan, S. S. S.; Cermelli, Claudio; Yamano, Y.; Akhyani, N.; Nagel, J. E.; Taub, D. D.; Becker, K. G.; Jacobson, S.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/450453
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