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鼠γ-疱疹病毒68能有效感染未成熟树突状细胞并阻断其成熟。

Murine gammaherpesvirus-68 productively infects immature dendritic cells and blocks maturation.

作者信息

Hochreiter Romana, Ptaschinski Catherine, Kunkel Steven L, Rochford Rosemary

机构信息

Department of Microbiology and Immunology, SUNY Upstate Medical University, 750 East Adams Sweet, Syracuse, NY, USA.

Department of Pathology, University of Michigan, Ann Arbor, MI, USA.

出版信息

J Gen Virol. 2007 Jul;88(Pt 7):1896-1905. doi: 10.1099/vir.0.82931-0.

Abstract

Many viruses have evolved mechanisms to evade host immunity by subverting the function of dendritic cells (DCs). This study determined whether murine gammaherpesvirus-68 (gamma HV-68) could infect immature or mature bone-marrow-derived DCs and what effect infection had on DC maturation. It was found that gamma HV-68 productively infected immature DCs, as evidenced by increased viral titres over time. If DCs were induced to mature by exposure to LPS and then infected with gamma HV-68, only a small percentage of cells was productively infected. However, limiting-dilution assays to measure viral reactivation demonstrated that the mature DCs were latently infected with gamma HV-68. Electron microscopy revealed the presence of capsids in the nucleus of immature DCs but not in mature DCs. Interestingly, infection of immature DCs by gamma HV-68 did not result in upregulation of the co-stimulatory molecules CD80 and CD86 or MHC class I and II, or induce cell migration, suggesting that the virus infection did not induce DC maturation. Furthermore, gamma HV-68 infection of immature DCs did not result in elevated interleukin-12, an important cytokine in the induction of T-cell responses. Finally, lipopolysaccharide and poly(I : C) stimulation of gamma HV-68-infected immature DCs did not induce increases in the expression of co-stimulatory molecules and MHC class I or II compared with mock-treated cells, suggesting that gamma HV-68 infection blocked maturation. Taken together, these data demonstrate that gamma HV-68 infection of DCs differs depending on the maturation state of the DC. Moreover, the block in DC maturation suggests a possible immunoevasion strategy by gamma HV-68.

摘要

许多病毒已经进化出通过破坏树突状细胞(DCs)的功能来逃避宿主免疫的机制。本研究确定了鼠γ疱疹病毒68型(γHV - 68)是否能感染未成熟或成熟的骨髓来源的DCs,以及感染对DC成熟有何影响。结果发现,γHV - 68能有效感染未成熟的DCs,随着时间的推移病毒滴度增加即证明了这一点。如果DCs通过暴露于LPS而被诱导成熟,然后感染γHV - 68,只有一小部分细胞能被有效感染。然而,用于测量病毒再激活的有限稀释分析表明,成熟的DCs被γHV - 68潜伏感染。电子显微镜显示未成熟DCs的细胞核中存在衣壳,而成熟DCs中则没有。有趣的是,γHV - 68感染未成熟DCs并未导致共刺激分子CD80和CD86或MHC I类和II类分子上调,也未诱导细胞迁移,这表明病毒感染并未诱导DC成熟。此外,γHV - 68感染未成熟DCs并未导致白细胞介素 - 12升高,白细胞介素 - 12是诱导T细胞反应的一种重要细胞因子。最后,与模拟处理的细胞相比,对γHV - 68感染的未成熟DCs进行脂多糖和聚肌苷酸 - 聚胞苷酸(poly(I : C))刺激并未诱导共刺激分子以及MHC I类或II类分子表达增加,这表明γHV - 68感染阻碍了成熟。综上所述,这些数据表明γHV - 68对DCs的感染因DC的成熟状态而异。此外,DC成熟的受阻表明γHV - 68可能存在一种免疫逃避策略。

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