Coxsackievirus B3 Engineered To Contain MicroRNA Targets for Muscle-Specific MicroRNAs Displays Attenuated Cardiotropic Virulence in Mice

被引:27
|
作者
He, Feng [1 ]
Yao, Hailan [1 ]
Wang, Jianmin [2 ,3 ]
Xiao, Zonghui [1 ]
Xin, Le [1 ,4 ]
Liu, Zhuo [5 ]
Ma, Xiaolin [1 ]
Sun, Juan [1 ]
Jin, Qi [2 ,3 ]
Liu, Zhewei [1 ,4 ]
机构
[1] Capital Inst Pediat, Mol Immunol Lab, Beijing, Peoples R China
[2] Chinese Acad Med Sci, MOH Key Lab Syst Biol Pathogens, Inst Pathogen Biol, Beijing 100730, Peoples R China
[3] Peking Union Med Coll, Beijing 100021, Peoples R China
[4] Peking Union Med Coll, Grad Sch, Capital Inst Pediat, Beijing 100021, Peoples R China
[5] Capital Inst Pediat, Biochem Lab, Beijing, Peoples R China
基金
中国国家自然科学基金; 北京市自然科学基金;
关键词
TRANSGENE EXPRESSION; UNTRANSLATED REGION; ENDOGENOUS MICRORNA; VIRUS; RNA; PATHOGENESIS; MYOCARDITIS; BIOSYNTHESIS; REPLICATION; RECOGNITION;
D O I
10.1128/JVI.02933-14
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Coxsackievirus B3 (CVB3) is trophic for cardiac tissue and is a major causative agent for viral myocarditis, where local viral replication in the heart may lead to heart failure or even death. Recent studies show that inserting microRNA target sequences into the genomes of certain viruses can eradicate these viruses within local host tissues that specifically express the cognate microRNA. Here, we demonstrated both in vitro and in vivo that incorporating target sequences for miRNA-133 and -206 into the 5' untranslated region of the CVB3 genome ameliorated CVB3 virulence in skeletal muscle and myocardial cells that specifically expressed the cognate cellular microRNAs. Compared to wild-type CVB3, viral replication of the engineered CVB3 was attenuated in human TE671 (rhabdomyosarcoma) and L6 (skeletal muscle) cell lines in vitro that expressed high levels of miRNA-206. In the in vivo murine CVB3-infection model, viral replication of the engineered CVB3 was attenuated specifically in the heart that expressed high levels of both miRNAs, but not in certain tissues, which allowed the host to retain the ability to induce a strong and protective humoral immune response against CVB3. The results of this study suggest that a microRNA-targeting strategy to control CVB3 tissue tropism and pathogenesis may be useful for viral attenuation and vaccine development. IMPORTANCE Coxsackievirus B3 (CVB3) is a major causative agent for viral myocarditis, and viral replication in the heart may lead to heart failure or even death. Limiting CVB3 replication within the heart may be a promising strategy to decrease CVB3 pathogenicity. miRNAs are similar to 21-nucleotide-long, tissue-specific endogenous small RNA molecules that posttranscriptionally regulate gene expression by imperfectly binding to the 3' untranslated region (UTR), the 5' UTR, or the coding region within a gene. In our study, muscle-specific miRNA targets (miRT) were incorporated into the CVB3 genome. Replication of the engineered viruses was restricted in the important heart tissue of infected mice, which reduced cardiac pathology and increased mouse survival. Meanwhile, replication ability was retained in other tissues, thus inducing a strong humoral immune response and providing long-term protection against CVB3 rechallenge. This study suggests that a microRNA-targeting strategy can potentially control CVB3 tissue tropism and pathogenesis and may be useful for viral attenuation and vaccine development.
引用
收藏
页码:908 / 916
页数:9
相关论文
共 25 条
  • [1] Dual microRNA-Regulated Oncolytic Coxsackievirus B3 Infection Displays Antitumor Activity with Attenuated Pathogenicity in Mice
    Miyamoto, Shohei
    Inoue, Hiroyuki
    Sagara, Miyako
    Wang, Beibei
    Takayama, Koichi
    Shimizu, Hiroyuki
    Nakanishi, Yoichi
    Tani, Kenzaburo
    [J]. MOLECULAR THERAPY, 2013, 21 : S28 - S29
  • [2] Attenuated virulence of pleconaril-resistant coxsackievirus B3 variants
    Groarke, JM
    Pevear, DC
    [J]. JOURNAL OF INFECTIOUS DISEASES, 1999, 179 (06): : 1538 - 1541
  • [3] A genetically engineered attenuated coxsackievirus B3 strain protects mice against lethal infection
    Dan, M
    Chantler, JK
    [J]. JOURNAL OF VIROLOGY, 2005, 79 (14) : 9285 - 9295
  • [4] Engineered coxsackievirus B3 containing multiple organ-specific miRNA targets showed attenuated viral tropism and protective immunity
    Xiao, Zonghui
    He, Feng
    Feng, Miao
    Liu, Zhuo
    Liu, Zhewei
    Li, Sen
    Wang, Wei
    Yao, Hailan
    Wu, Jianxin
    [J]. INFECTION GENETICS AND EVOLUTION, 2022, 103
  • [5] Copper deficiency increases the virulence of coxsackievirus b3 infections in mice
    Smith, AD
    Botero, S
    Levander, OA
    [J]. FASEB JOURNAL, 2006, 20 (04): : A554 - A554
  • [6] Increased virulence of coxsackievirus B3 in mice due to vitamin E or selenium deficiency
    Beck, MA
    [J]. JOURNAL OF NUTRITION, 1997, 127 : S966 - S970
  • [7] Copper deficiency increases the virulence of amyocarditic and myocarditic strains of coxsackievirus B3 in mice
    Smith, Allen D.
    Botero, Sebastian
    Levander, Orville A.
    [J]. JOURNAL OF NUTRITION, 2008, 138 (05): : 849 - 855
  • [8] INCREASED VIRULENCE OF A HUMAN ENTEROVIRUS (COXSACKIEVIRUS B3) IN SELENIUM-DEFICIENT MICE
    BECK, MA
    KOLBECK, PC
    SHI, Q
    ROHR, LH
    MORRIS, VC
    LEVANDER, OA
    [J]. JOURNAL OF INFECTIOUS DISEASES, 1994, 170 (02): : 351 - 357
  • [9] Microarray analysis reveals altered circulating microRNA expression in mice infected with Coxsackievirus B3
    Sun, Chaoyu
    Tong, Lei
    Zhao, Wenran
    Wang, Yan
    Meng, Yuan
    Lin, Lexun
    Liu, Bingchen
    Zhai, Yujia
    Zhong, Zhaohua
    Li, Xueqi
    [J]. EXPERIMENTAL AND THERAPEUTIC MEDICINE, 2016, 12 (04) : 2220 - 2226
  • [10] Specific elimination of coxsackievirus B3 infected cells with a protein engineered toxin-antitoxin system
    Park, Jung-Ho
    Park, Jin-Ho
    Choi, Wonho
    Lim, Byung-Kwan
    [J]. MOLECULAR & CELLULAR TOXICOLOGY, 2019, 15 (04) : 425 - 430