Meganuclease-mediated Inhibition of HSV1 Infection in Cultured Cells

被引:57
作者
Grosse, Stephanie [2 ]
Huot, Nicolas
Mahiet, Charlotte [3 ,4 ]
Arnould, Sylvain [2 ]
Barradeau, Sebastien [3 ]
Le Clerre, Diane [2 ]
Chion-Sotinel, Isabelle [2 ]
Jacqmarcq, Cecile [2 ]
Chapellier, Benoit [5 ]
Ergani, Ayla
Desseaux, Carole [2 ]
Cedrone, Frederic [6 ]
Conseiller, Emmanuel [3 ]
Paques, Frederic [2 ,6 ]
Labetoulle, Marc [1 ,7 ]
Smith, Julianne [2 ]
机构
[1] Ctr Natl Rech Sci, Lab Virol Mol & Struct, UMR 2472, F-91198 Gif Sur Yvette, France
[2] Cellectis Genome Surg, Romainville, France
[3] Pepiniere Paris Sante Cochin, Genom Vis, Paris, France
[4] Inst Pasteur, Mol Retrovirol Unit, Dept Virol, Paris, France
[5] Inst Vis, Paris, France
[6] Cellectis, Romainville, France
[7] Univ Paris 11, Dept Ophthalmol, Hop Bicetre, AP HP, Le Kremlin Bicetre, France
关键词
ZINC-FINGER NUCLEASES; DOUBLE-STRAND BREAKS; OCULAR HERPES-SIMPLEX; VIRUS TYPE-1 LATENCY; HOMING ENDONUCLEASES; DNA-BINDING; DIRECTED EVOLUTION; GENE; RECOMBINATION; GENOME;
D O I
10.1038/mt.2010.302
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Herpes simplex virus type 1 (HSV1) is a major health problem. As for most viral diseases, current antiviral treatments are based on the inhibition of viral replication once it has already started. As a consequence, they impair neither the viral cycle at its early stages nor the latent form of the virus, and thus cannot be considered as real preventive treatments. Latent HSV1 virus could be addressed by rare cutting endonucleases, such as meganucleases. With the aim of a proof of concept study, we generated several meganucleases recognizing HSV1 sequences, and assessed their antiviral activity in cultured cells. We demonstrate that expression of these proteins in African green monkey kidney fibroblast (COS-7) and BSR cells inhibits infection by HSV1, at low and moderate multiplicities of infection (MOIs), inducing a significant reduction of the viral load. Furthermore, the remaining viral genomes display a high rate of mutation (up to 16%) at the mega-nuclease cleavage site, consistent with a mechanism of action based on the cleavage of the viral genome. This specific mechanism of action qualifies meganucleases as an alternative class of antiviral agent, with the potential to address replicative as well as latent DNA viral forms.
引用
收藏
页码:694 / 702
页数:9
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