Kuchtey John, Chefalo Peter J, Gray Reginald C, Ramachandra Lakshmi, Harding Clifford V
Department of Pathology, Case Western Reserve University, Cleveland, OH 44106, USA.
J Immunol. 2005 Aug 15;175(4):2244-51. doi: 10.4049/jimmunol.175.4.2244.
Dendritic cells (DCs) internalize exogenous Ags and process them for cross-presentation by class I MHC (MHC-I) to CD8+ T cells. This processing can occur by transporter for Ag presentation (TAP)-dependent or TAP-independent mechanisms. We observed that CpG DNA enhanced cross-presentation of Ags by Flt-3L-cultured bone marrow-derived murine DCs by a type I IFN (IFN-alphabeta)-dependent mechanism. Myeloid DCs provided cross-presentation function in this system. Both TAP1 knockout and wild-type DCs showed enhanced cross-presentation when treated with CpG DNA at 26 degrees C, demonstrating that TAP is not essential to this regulatory mechanism, although TAP is an important determinant of MHC-I expression. Enhancement of cross-processing by CpG DNA did not involve increased Ag uptake or proteolysis but did correlate with IFN-alphabeta-dependent increases in expression of MHC-I mRNA and protein. Increased MHC-I mRNA levels resulted in part from stabilization of MHC-I mRNA, a novel posttranscriptional mechanism for regulation of MHC-I expression. Thus, a major mechanism by which CpG oligodeoxynucleotide increase cross presentation by DCs appears to be an IFN-alphabeta-mediated increase in MHC-I synthesis.
树突状细胞(DCs)摄取外源性抗原并将其加工处理,通过I类主要组织相容性复合体(MHC-I)交叉呈递给CD8+ T细胞。这种加工处理可通过抗原呈递转运体(TAP)依赖性或TAP非依赖性机制发生。我们观察到,CpG DNA通过I型干扰素(IFN-αβ)依赖性机制增强了Flt-3L培养的骨髓来源的小鼠DCs对外源性抗原的交叉呈递。在该系统中,髓样DCs发挥了交叉呈递功能。TAP1基因敲除的DCs和野生型DCs在26℃用CpG DNA处理时均显示出增强的交叉呈递,这表明尽管TAP是MHC-I表达的重要决定因素,但TAP对这种调节机制并非必不可少。CpG DNA增强交叉加工并不涉及抗原摄取或蛋白水解的增加,但确实与IFN-αβ依赖性的MHC-I mRNA和蛋白表达增加相关。MHC-I mRNA水平的升高部分源于MHC-I mRNA的稳定,这是一种调节MHC-I表达的新的转录后机制。因此,CpG寡脱氧核苷酸增加DCs交叉呈递的主要机制似乎是IFN-αβ介导的MHC-I合成增加。