Putative Functional Domains of Human Cytomegalovirus pUL56 Involved in Dimerization and Benzimidazole D-Ribonucleoside Activity

Author:

Champier Gaël1,Couvreux Anthony234,Hantz Sébastien1,Rametti Armelle5,Mazeron Marie-Christine6,Bouaziz Serge234,Denis François1,Alain Sophie1

Affiliation:

1. Université de Limoges, Faculté de Médecine, Centre Hospitalier Universitaire Dupuytren, EA 3175, Laboratoire de Bactériologie-Virologie-Hygiène, Centre National de Référence Cytomégalovirus, Limoges, France

2. Unité de Pharmacologie Chimique et Génétique; CNRS, UMR 8151, Paris, F-75270 Cedex 06, France

3. Inserm, U 640, Paris, F-75270 Cedex 06, France

4. Université Paris Descartes, Faculté des Sciences Pharmaceutiques et Biologiques, Paris, F-75270 Cedex 06, France

5. EA 3842 Homéostasie Cellulaire et Pathologie, Faculté de Médecine de Limoges, France

6. Service de Bactériologie-Virologie, Hôpital Lariboisière, Assistance Publique-Hôpitaux de Paris, Centre National de Référence Cytomegalovirus Associate Laboratory, Paris, France

Abstract

Background Benzimidazole d-ribonucleosides inhibit DNA packaging during human cytomegalovirus (HCMV) replication. Although they have been shown to target pUL56 and pUL89 (the large and small subunits of the HCMV terminase, respectively) their mechanism of action is not yet fully understood. We aimed here to better understand HCMV DNA maturation and the mechanism of action of benzimidazole derivatives. Methods The HCMV pUL56 protein was studied by sequence analysis of the HCMV UL56 gene and herpesvirus counterparts combined with primary structure analysis of the corresponding amino acid sequences. Results The UL56 sequence analysis of 45 HCMV strains and counterparts among herpesviruses allowed the identification of 12 conserved regions. Moreover, comparison with the product of gene 49 (gp49) of bacteriophage T4 suggested that the pUL56 zinc finger is localized close to the dimerization site of pUL56, providing a spatial organization of the catalytic site that allows recognition and cleavage of DNA. Conclusions This study provides a basis to investigate the mechanism of concatemeric DNA cleavage and a biochemical basis for DNA packaging inhibition by benzimidazole derivatives.

Publisher

SAGE Publications

Subject

Infectious Diseases,Pharmacology (medical),Pharmacology

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