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S-adenosyl methionine decarboxylase activity is required for the outcome of herpes simplex virus type 1 infection and represents a new potential therapeutic target
- Source :
- FASEB Journal, FASEB Journal, 2005, pp.1130, FASEB Journal, Federation of American Society of Experimental Biology, 2005, 19 (9), pp.1128-30. ⟨10.1096/fj.04-2108fje⟩, FASEB Journal, Federation of American Society of Experimental Biology, 2005, pp.1130
- Publication Year :
- 2005
- Publisher :
- HAL CCSD, 2005.
-
Abstract
- All the available antiherpetic drugs are directed against viral proteins. Their extensive clinical use has led to the emergence of resistant viral strains. There is a need for the treatment of herpes infections due to resistant strains, especially for immunocompromised patients. To design new kinds of drugs, we have developed a strategy to identify cellular targets. Herpes simplex virus type 1 (HSV-1) infection is concomitant to a repression of most host protein synthesis. However, some cellular proteins continue to be efficiently synthesized. We speculated that some of them could determine the outcome of infection. Since two polyamines, spermidine and spermine, are components of the HSV-1 virions, we investigated whether enzymes involved in their synthesis could be required for viral infection. We show that inhibition of S-adenosyl methionine decarboxylase, a key enzyme of the polyamine metabolic pathway, prevents HSV-1 infection. Inhibition of polyamine synthesis prevents infection of culture cells with HSV-1 laboratory strains as well as clinical isolates that are resistant to the conventional antiviral drugs acyclovir and foscarnet. Our data provide the opportunity to develop molecules with a novel mechanism of action for the treatment of herpes infection.
- Subjects :
- Foscarnet
Enzymologic
Mitoguazone
viruses
Spermine
Acyclovir
MESH: Herpes Simplex
Herpesvirus 1, Human
MESH: Mitoguazone
medicine.disease_cause
Virus Replication
Biochemistry
Enzyme Inhibitors/*pharmacology/therapeutic use
Spermine/metabolism/pharmacology
Cell Proliferation/drug effects
chemistry.chemical_compound
Foscarnet/pharmacology
MESH: Acyclovir
S-Adenosyl methionine
MESH: Spermine
Enzyme Inhibitors
OCIS 000.1430
0303 health sciences
Methionine decarboxylase
MESH: Gene Expression Regulation, Enzymologic
Antiviral Agents/*pharmacology
3. Good health
Messenger/analysis
MESH: Herpesvirus 1, Human
MESH: Enzyme Inhibitors
[SDV.MP.VIR]Life Sciences [q-bio]/Microbiology and Parasitology/Virology
medicine.symptom
Biotechnology
medicine.drug
MESH: Foscarnet
MESH: Antiviral Agents
Adenosylmethionine Decarboxylase
Herpes Simplex/*drug therapy/enzymology
Mitoguazone/*pharmacology
[SDV.BC]Life Sciences [q-bio]/Cellular Biology
Biology
Antiviral Agents
Gene Expression Regulation, Enzymologic
Cell Line
03 medical and health sciences
MESH: Cell Proliferation
Genetics
medicine
Humans
RNA, Messenger
Molecular Biology
030304 developmental biology
Cell Proliferation
MESH: RNA, Messenger
MESH: Adenosylmethionine Decarboxylase
Virus Replication/drug effects
MESH: Humans
030306 microbiology
Herpesvirus 1
MESH: Virus Replication
Herpes Simplex
Adenosylmethionine Decarboxylase/*antagonists & inhibitors/genetics
Virology
MESH: Cell Line
Spermidine
Herpes simplex virus
chemistry
Mechanism of action
Gene Expression Regulation
Human/*drug effects/physiology
RNA
Acyclovir/pharmacology
Polyamine
Subjects
Details
- Language :
- English
- ISSN :
- 08926638 and 15306860
- Database :
- OpenAIRE
- Journal :
- FASEB Journal, FASEB Journal, 2005, pp.1130, FASEB Journal, Federation of American Society of Experimental Biology, 2005, 19 (9), pp.1128-30. ⟨10.1096/fj.04-2108fje⟩, FASEB Journal, Federation of American Society of Experimental Biology, 2005, pp.1130
- Accession number :
- edsair.doi.dedup.....ac2f0e2f07324816b9b9d92df6cc5087
- Full Text :
- https://doi.org/10.1096/fj.04-2108fje⟩