Inhibitions of human parainfluenza virus type 2 replication by ribavirin and mycophenolate mofetil are restored by guanosine and S-(4-nitrobenzyl)-6-thioinosine.


Journal

Drug discoveries & therapeutics
ISSN: 1881-784X
Titre abrégé: Drug Discov Ther
Pays: Japan
ID NLM: 101493809

Informations de publication

Date de publication:
2019
Historique:
entrez: 21 1 2020
pubmed: 21 1 2020
medline: 12 5 2020
Statut: ppublish

Résumé

The antiviral activities of a nucleoside analog antiviral drug (ribavirin) and a non-nucleoside drug (mycophenolate mofetil) against human parainfluenza virus type 2 (hPIV-2) were investigated, and the restoration of the inhibition by guanosine and S-(4-nitrobenzyl)-6-thioinosine (NBTI: equilibrative nucleoside transporter 1 inhibitor) were also investigated. Ribavirin (RBV) and mycophenolate mofetil (MMF) inhibited cell fusion induced by hPIV-2. Both RBV and MMF considerably reduced the number of viruses released from the cells. Virus genome synthesis was inhibited by RBV and MMF as determined by polymerase chain reaction (PCR) and real time PCR. mRNA syntheses were also reduced. An indirect immunofluorescence study showed that RBV and MMF largely inhibited viral protein syntheses. Using a recombinant green fluorescence protein (GFP)-expressing hPIV-2 without matrix protein (rhPIV-2ΔMGFP), it was found that virus entry into the cells and multinucleated giant cell formation were almost completely blocked by RBV and MMF. RBV and MMF did not disrupt actin microfilaments or microtubules. Both guanosine and NBTI completely or partially reversed the inhibition by RBV and MMF in the viral replication, syntheses of genome RNA, mRNA and protein, and multinucleated giant cell formation. NBTI caused a little damage in actin microfilaments, but had no effect on microtubules. Both RBV and MMF inhibited the replication of hPIV-2, mainly by inhibiting viral genome RNA, mRNA and protein syntheses. The inhibition was almost completely recovered by guanosine. These results indicate that the major mechanism of the inhibition is the depletion of intracellular GTP pools.

Identifiants

pubmed: 31956229
doi: 10.5582/ddt.2019.01084
doi:

Substances chimiques

Antiviral Agents 0
RNA, Viral 0
Guanosine 12133JR80S
Thioinosine 46S541971T
Ribavirin 49717AWG6K
4-nitrobenzylthioinosine GV1L2DZM2Z
Mycophenolic Acid HU9DX48N0T

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

314-321

Auteurs

Jun Uematsu (J)

Microbiology and Immunology Section, Department of Clinical Nutrition, Graduate School of Health Science, Suzuka University of Medical Science, Suzuka, Mie, Japan.

Kae Sakai-Sugino (K)

Department of Clinical Nutrition, Faculty of Health Science, Suzuka University of Medical Science, Suzuka, Mie, Japan.

Sahoko Kihira-Nakanishi (S)

Department of Clinical Nutrition, Faculty of Health Science, Suzuka University of Medical Science, Suzuka, Mie, Japan.

Hidetaka Yamamoto (H)

Faculty of Pharmaceutical Sciences, Suzuka University of Medical Science, Suzuka, Mie, Japan.

Kazuyuki Hirai (K)

Faculty of Pharmaceutical Sciences, Suzuka University of Medical Science, Suzuka, Mie, Japan.

Mitsuo Kawano (M)

Department of Microbiology, Mie University Graduate School of Medicine, Tsu, Mie, Japan.

Miwako Nishio (M)

Department of Microbiology, Mie University Graduate School of Medicine, Tsu, Mie, Japan.

Masato Tsurudome (M)

Department of Microbiology, Mie University Graduate School of Medicine, Tsu, Mie, Japan.

Myles O'Brien (M)

Graduate School of Mie Prefectural College of Nursing, Tsu, Mie, Japan.

Hiroshi Komada (H)

Microbiology and Immunology Section, Department of Clinical Nutrition, Graduate School of Health Science, Suzuka University of Medical Science, Suzuka, Mie, Japan.

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Classifications MeSH