Distinct Antiviral Roles for Human 2′,5′-Oligoadenylate Synthetase Family Members against Dengue Virus Infection

被引:151
作者
Lin, Ren-Jye [1 ]
Yu, Han-Pang [1 ]
Chang, Bi-Lan [1 ,2 ]
Tang, Wei-Chun [1 ,3 ]
Liao, Ching-Len [3 ,4 ]
Lin, Yi-Ling [1 ,2 ,3 ,4 ]
机构
[1] Acad Sinica, Inst Biomed Sci, Taipei 115, Taiwan
[2] Acad Sinica, Genom Res Ctr, Taipei 115, Taiwan
[3] Natl Def Med Ctr, Grad Inst Life Sci, Taipei, Taiwan
[4] Natl Def Med Ctr, Dept Microbiol & Immunol, Taipei, Taiwan
关键词
2'-5' OLIGOADENYLATE SYNTHETASE; WEST-NILE-VIRUS; INTERFERON-INDUCED; 56-KDA; RNASE-L; HUMAN-CELLS; 2-5A-DEPENDENT RNASE; HEMORRHAGIC-FEVER; PERIPHERAL-BLOOD; DISEASE SEVERITY; GENE-EXPRESSION;
D O I
10.4049/jimmunol.0902728
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
The 2',5'-oligoadenylate synthetase (OAS) and its downstream effector RNase 1, play important roles in host defense against virus infection. Oas1b, one of the eight Oas1 genes in the mouse genome, has been identified as a murine flavivirus-resistance gene. Four genes, OAS1, OAS2, OAS3, and OAS-like (OASL), have been identified in the human OAS gene family, and 10 isoforms, including OAS1 (p42, p44, p46, p48, and p52), OAS2 (p69 and p71), OAS3 (p100), and OASL (p30 and p59) can be generated by alternative splicing. In this study, we determined the role of the human OAS/RNase L pathway in host defense against dengue virus (DEN) infection and assessed the antiviral potential of each isoform in the human OAS family. DEN replication was reduced by overexpression and enhanced by knockdown of RNase L expression, indicating a protective role for RNase L against DEN replication in human cells. The human OAS1 p42, OAS1 p46, and OAS3 p100, but not the other OAS isoforms, blocked DEN replication via an RNase L-dependent mechanism. Furthermore, the anti-DEN activities of these three OAS isoforms correlated with their ability to trigger RNase L activation in DEN-infected cells. Thus, OAS1 p42/p46 and OAS3 p 100 are likely to contribute to host defense against DEN infection and play a role in determining the outcomes of DEN disease severity. The Journal of Immunology, 2009, 183: 8035-8043.
引用
收藏
页码:8035 / 8043
页数:9
相关论文
共 46 条
[1]   Interaction between the 2′-5′ oligoadenylate synthetase-like protein p59 OASL and the transcriptional repressor methyl CpG-binding protein 1 [J].
Andersen, JB ;
Strandbygård, DJ ;
Hartmann, R ;
Justesen, J .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 2004, 271 (03) :628-636
[2]   Variation in antiviral 2′,5′-oligoadenylate synthetase (2′5′AS) enzyme activity is controlled by a single-nucleotide polymorphism at a splice-acceptor site in the OAS1 gene [J].
Bonnevie-Nielsen, V ;
Field, LL ;
Lu, S ;
Zheng, DJ ;
Li, M ;
Martensen, PM ;
Nielsen, TB ;
Beck-Nielsen, H ;
Lau, YL ;
Pociot, F .
AMERICAN JOURNAL OF HUMAN GENETICS, 2005, 76 (04) :623-633
[3]   The large form of human 2′,5′-Oligoadenylate Synthetase (OAS3) exerts antiviral effect against Chikungunya virus [J].
Brehin, Anne-Claire ;
Casademont, Isabelle ;
Frenkiel, Marie-Pascale ;
Julier, Cecile ;
Sakuntabhai, Anavaj ;
Despres, Philippe .
VIROLOGY, 2009, 384 (01) :216-222
[4]  
CHEBATH J, 1987, J BIOL CHEM, V262, P3852
[5]   Human genetic determinants of dengue virus susceptibility [J].
Coffey, Lark L. ;
Mertens, Eva ;
Brehin, Anne-Claire ;
Fernandez-Garcia, Maria Dolores ;
Amara, Ali ;
Despres, Philippe ;
Sakuntabhai, Anavaj .
MICROBES AND INFECTION, 2009, 11 (02) :143-156
[6]   Modulation of dengue virus infection in human cells by alpha, beta, and gamma interferons [J].
Diamond, MS ;
Roberts, TG ;
Edgil, D ;
Lu, B ;
Ernst, J ;
Harris, E .
JOURNAL OF VIROLOGY, 2000, 74 (11) :4957-4966
[7]   Interferon inhibits dengue virus infection by preventing translation of viral RNA through a PKR-independent mechanism [J].
Diamond, MS ;
Harris, E .
VIROLOGY, 2001, 289 (02) :297-311
[8]   2-5A-DEPENDENT RNASE MOLECULES DIMERIZE DURING ACTIVATION BY 2-5A [J].
DONG, BH ;
SILVERMAN, RH .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1995, 270 (08) :4133-4137
[9]  
DONG BH, 1994, J BIOL CHEM, V269, P14153
[10]   Basis for regulated RNA cleavage by functional analysis of RNase L and Ire1p [J].
Dong, BH ;
Niwa, M ;
Walter, P ;
Silverman, RH .
RNA, 2001, 7 (03) :361-373