Eisfeld Amie J, Yee Michael B, Erazo Angela, Abendroth Allison, Kinchington Paul R
Department of Ophthalmology, School of Medicine, University of Pittsburgh, Pittsburgh, Pennsylvania 15213, USA.
J Virol. 2007 Sep;81(17):9034-49. doi: 10.1128/JVI.00711-07. Epub 2007 Jun 13.
We show here that the varicella-zoster virus (VZV) open reading frame 66 (ORF66) protein kinase is one mechanism employed to reduce class I major histocompatibility complex (MHC-I) surface expression in VZV-infected cells. Cells expressing enhanced green fluorescent protein-tagged functional and inactivated ORF66 (GFP-66 and GFP-66kd) from replication-defective adenovirus vectors revealed that ORF66 reduced MHC-I surface levels in a manner dependent on kinase activity. Cells infected with recombinant VZV expressing GFP-66 exhibited a significantly greater reduction in MHC-I surface expression than that observed in cells infected with VZV disrupted in GFP-66 expression. MHC-I maturation was delayed in its transport from the endoplasmic reticulum through the Golgi in both adenovirus-transduced cells expressing only GFP-66 and in VZV-infected cells expressing high levels of GFP-66, and this was predominantly kinase dependent. MHC-I levels were reduced in VZV-infected cells, and analyses of intracellular MHC-I revealed accumulation of folded MHC-I in the Golgi region, irrespective of ORF66 expression. Thus, the ORF66 kinase is important for VZV-mediated MHC-I downregulation, but additional mechanisms also may be involved. Analyses of the VZV ORF9a protein, the ortholog of the bovine herpesvirus 1 transporter associated with antigen processing inhibitor UL49.5 revealed no effects on MHC-I. These results establish a new role for viral protein kinases in immune evasion and suggest that VZV utilizes unique mechanisms to inhibit antigen presentation.
我们在此表明,水痘 - 带状疱疹病毒(VZV)开放阅读框66(ORF66)蛋白激酶是VZV感染细胞中用于降低I类主要组织相容性复合体(MHC - I)表面表达的一种机制。从复制缺陷型腺病毒载体表达增强型绿色荧光蛋白标记的功能性和失活的ORF66(GFP - 66和GFP - 66kd)的细胞显示,ORF66以依赖激酶活性的方式降低MHC - I表面水平。感染表达GFP - 66的重组VZV的细胞,其MHC - I表面表达的降低幅度明显大于感染GFP - 66表达被破坏的VZV的细胞。在仅表达GFP - 66的腺病毒转导细胞和表达高水平GFP - 66的VZV感染细胞中,MHC - I从内质网通过高尔基体的成熟运输均被延迟,且这主要依赖激酶。VZV感染细胞中的MHC - I水平降低,对细胞内MHC - I的分析显示,无论ORF66表达如何,折叠的MHC - I在高尔基体区域积累。因此,ORF66激酶对VZV介导的MHC - I下调很重要,但可能还涉及其他机制。对VZV ORF9a蛋白(牛疱疹病毒1与抗原加工抑制剂UL49.5相关的转运蛋白的直系同源物)的分析显示其对MHC - I无影响。这些结果确立了病毒蛋白激酶在免疫逃逸中的新作用,并表明VZV利用独特机制抑制抗原呈递。