Lengyel Joy, Strain Anna K, Perkins Keith D, Rice Stephen A
Department of Microbiology, University of Minnesota Medical School, Mayo Mail Code 196, 420 Delaware St. S.E., Minneapolis, MN 55455, USA.
Virology. 2006 Sep 1;352(2):368-79. doi: 10.1016/j.virol.2006.04.044. Epub 2006 Jun 14.
It was previously shown that herpes simplex virus type 1 (HSV-1) is sensitive to leptomycin B (LMB), an inhibitor of nuclear export factor CRM1, and that a single methionine to threonine change at residue 50 (M50T) of viral immediate-early (IE) protein ICP27 can confer LMB resistance. In this work, we show that deletion of residues 21-63 from ICP27 can also confer LMB resistance. We further show that neither the M50T mutation nor the presence of LMB affects the nuclear shuttling activity of ICP27, suggesting that another function of ICP27 determines LMB resistance. A possible clue to this function emerged when it was discovered that LMB treatment of HSV-1-infected cells dramatically enhances the cytoplasmic accumulation of two other IE proteins, ICP0 and ICP4. This effect is completely dependent on ICP27 and is reversed in cells infected with LMB-resistant mutants. Moreover, LMB-resistant mutations in ICP27 enhance the nuclear localization of ICP0 and ICP4 even in the absence of LMB, and this effect can be discerned in transfected cells. Thus, the same amino (N)-terminal region of ICP27 that determines sensitivity to LMB also enhances ICP27's previously documented ability to promote the cytoplasmic accumulation of ICP4 and ICP0. We speculate that ICP27's effects on ICP4 and ICP0 may contribute to HSV-1 LMB sensitivity.
先前的研究表明,单纯疱疹病毒1型(HSV-1)对核输出因子CRM1的抑制剂雷帕霉素B(LMB)敏感,并且病毒立即早期(IE)蛋白ICP27第50位残基的单个甲硫氨酸到苏氨酸的变化(M50T)可赋予对LMB的抗性。在这项研究中,我们表明从ICP27中缺失21-63位残基也可赋予对LMB的抗性。我们进一步表明,M50T突变和LMB的存在均不影响ICP27的核穿梭活性,这表明ICP27的另一种功能决定了对LMB的抗性。当发现用LMB处理HSV-1感染的细胞会显著增强另外两种IE蛋白ICP0和ICP4的细胞质积累时,这一功能的可能线索出现了。这种效应完全依赖于ICP27,并且在用LMB抗性突变体感染的细胞中会逆转。此外,即使在没有LMB的情况下,ICP27中的LMB抗性突变也会增强ICP0和ICP4的核定位,并且这种效应在转染细胞中也可以观察到。因此,ICP27中决定对LMB敏感性的相同氨基(N)末端区域也增强了ICP27先前记录的促进ICP4和ICP0细胞质积累的能力。我们推测ICP27对ICP4和ICP0的作用可能导致HSV-1对LMB敏感。