Shen Xuefei, Wong S B Justin, Buck Christopher B, Zhang Jiangwen, Siliciano Robert F
Program in Biochemistry, Department of Medicine, The Johns Hopkins University School of Medicine, 720 Rutland Avenue, Baltimore, MD 21205, USA.
J Immunol. 2002 Oct 15;169(8):4222-9. doi: 10.4049/jimmunol.169.8.4222.
To explore the relative importance of direct presentation vs cross-priming in the induction of CTL responses to viruses and viral vectors, we generated a recombinant vaccinia vector, vUS11, expressing the human CMV (HCMV) protein US11. US11 dislocates most allelic forms of human and murine MHC class I heavy chains from the lumen of the endoplasmic reticulum into the cytosol, where they are degraded by proteasomes. Expression of US11 dramatically decreased the presentation of viral Ag and CTL recognition of infected cells in vitro without significantly reducing total cell surface MHC class I levels. However, because US11 is an endoplasmic reticulum resident membrane protein, it cannot block presentation by non-infected cells that take up Ag through the cross-priming pathway. We show that the expression of US11 strongly inhibits the induction of primary CD8(+) CTLs when the infection occurs via the i.p. or i.v. route, demonstrating that direct priming is critical for the induction of CTL responses to viral infections introduced via these routes. This effect is less dramatic following i.m. infection and is minimal after s.c. or intradermal infection. Thus, classic MHC class I Ag presentation and cross-priming contribute differentially to the induction of CD8(+) CTLs following exposure to vaccinia virus via different routes.
为了探究直接提呈与交叉致敏在诱导针对病毒和病毒载体的CTL反应中的相对重要性,我们构建了一种表达人巨细胞病毒(HCMV)蛋白US11的重组痘苗病毒载体vUS11。US11可将大多数人源和鼠源MHC I类重链等位基因形式从内质网腔移位至胞质溶胶中,在胞质溶胶中它们会被蛋白酶体降解。US11的表达在体外显著降低了病毒抗原的提呈以及CTL对感染细胞的识别,而不会显著降低细胞表面MHC I类分子的总水平。然而,由于US11是一种内质网驻留膜蛋白,它无法阻断通过交叉致敏途径摄取抗原的未感染细胞的提呈。我们发现,当通过腹腔注射或静脉注射途径进行感染时,US11的表达强烈抑制了初始CD8⁺ CTL的诱导,这表明直接致敏对于诱导针对通过这些途径引入的病毒感染的CTL反应至关重要。在肌肉注射感染后,这种效应不太明显,而在皮下或皮内感染后则最小。因此,经典的MHC I类抗原提呈和交叉致敏在通过不同途径暴露于痘苗病毒后对CD8⁺ CTL诱导的贡献有所不同。