Parkinson J, Lees-Miller S P, Everett R D
MRC Virology Unit, Glasgow G11 5JR, Scotland, United Kingdom.
J Virol. 1999 Jan;73(1):650-7. doi: 10.1128/JVI.73.1.650-657.1999.
Herpes simplex virus type 1 (HSV-1) infection causes the active degradation of the catalytic subunit of DNA-dependent protein kinase (DNA-PKcs), and this process is reliant on the expression of the HSV-1 immediate-early protein Vmw110. In this study we investigated in more detail the mechanism by which the degradation occurs, the domains of Vmw110 which are required, and whether Vmw110 is by itself sufficient for the effect. We found that proteasome inhibitors prevented the degradation of DNA-PKcs, indicating the involvement of a proteasome pathway. Furthermore, the continued activity of DNA-PK during infection in the presence of these inhibitors indicated that Vmw110 does not directly alter the enzyme activity of DNA-PKcs prior to its degradation in a normal infection. Indeed, Vmw110 was found to bind to neither the catalytic nor Ku subunits of DNA-PK. Using mutant Vmw110 viruses we show that the RING finger domain of Vmw110 is essential for the induced degradation of DNA-PKcs but that the ability of Vmw110 to bind to a cellular ubiquitin-specific protease (HAUSP) is not required. When expressed in the absence of other viral proteins, Vmw110 was sufficient to cause the degradation of DNA-PKcs, indicating that the effect on the stability of DNA-PKcs was a direct consequence of Vmw110 activity and not an indirect Vmw110-dependent effect of virus infection. Finally, the Vmw110-induced degradation of DNA-PKcs and loss in DNA-PK activity appears to be beneficial to HSV-1 infection, as virus replication was more efficient in cells lacking DNA-PKcs, especially at low multiplicities of infection.
1型单纯疱疹病毒(HSV-1)感染会导致DNA依赖性蛋白激酶(DNA-PKcs)的催化亚基发生主动降解,而这一过程依赖于HSV-1立即早期蛋白Vmw110的表达。在本研究中,我们更详细地研究了降解发生的机制、Vmw110所需的结构域,以及Vmw110本身是否足以产生这种效应。我们发现蛋白酶体抑制剂可阻止DNA-PKcs的降解,这表明涉及蛋白酶体途径。此外,在这些抑制剂存在的情况下感染期间DNA-PK的持续活性表明,在正常感染中Vmw110在降解DNA-PKcs之前不会直接改变其酶活性。实际上,发现Vmw110既不与DNA-PK的催化亚基也不与Ku亚基结合。使用突变的Vmw110病毒,我们表明Vmw110的RING指结构域对于诱导DNA-PKcs的降解至关重要,但Vmw110与细胞泛素特异性蛋白酶(HAUSP)结合的能力并非必需。当在没有其他病毒蛋白的情况下表达时,Vmw110足以导致DNA-PKcs的降解,这表明对DNA-PKcs稳定性的影响是Vmw110活性的直接结果,而不是病毒感染的间接Vmw110依赖性效应。最后,Vmw110诱导的DNA-PKcs降解和DNA-PK活性丧失似乎对HSV-1感染有益,因为在缺乏DNA-PKcs的细胞中病毒复制更有效,尤其是在低感染复数时。