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首页> 外文期刊>The journal of immunology >Presentation of Endogenously Synthesized MHC Class II-Restricted Epitopes by MHC Class II Cancer Vaccines Is Independent of Transporter Associated with Ag Processing and the Proteasome
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Presentation of Endogenously Synthesized MHC Class II-Restricted Epitopes by MHC Class II Cancer Vaccines Is Independent of Transporter Associated with Ag Processing and the Proteasome

机译:MHC II类癌症疫苗的内源性合成MHC II类限制性表位的呈现独立于与Ag加工和蛋白酶体相关的转运蛋白

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Cell-based vaccines consisting of invariant chain-negative tumor cells transfected with syngeneic MHC class II (MHC II) and costimulatory molecule genes are prophylactic and therapeutic agents for the treatment of murine primary and metastatic cancers. Vaccine efficacy is due to direct presentation of endogenously synthesized, MHC II-restricted tumor peptides to CD4+ T cells. Because the vaccine cells lack invariant chain, we have hypothesized that, unlike professional APC, the peptide-binding groove of newly synthesized MHC II molecules may be accessible to peptides, allowing newly synthesized MHC II molecules to bind peptides that have been generated in the proteasome and transported into the endoplasmic reticulum via the TAP complex. To test this hypothesis, we have compared the Ag presentation activity of multiple clones of TAP-negative and TAP-positive tumor cells transfected with I-A k genes and the model Ag hen egg white lysozyme targeted to the endoplasmic reticulum or cytoplasm. Absence of TAP does not diminish Ag presentation of three hen egg white lysozyme epitopes. Likewise, cells treated with proteasomal and autophagy inhibitors are as effective APC as untreated cells. In contrast, drugs that block endosome function significantly inhibit Ag presentation. Coculture experiments demonstrate that the vaccine cells do not release endogenously synthesized molecules that are subsequently endocytosed and processed in endosomal compartments. Collectively, these data indicate that vaccine cell presentation of MHC II-restricted endogenously synthesized epitopes occurs via a mechanism independent of the proteasome and TAP complex, and uses a pathway that overlaps with the classical endosomal pathway for presentation of exogenously synthesized molecules.
机译:由以II型同基因MHC(MHC II)和共刺激分子基因转染的恒定链阴性肿瘤细胞组成的基于细胞的疫苗是预防和治疗鼠类原发性和转移性癌症的药物。疫苗功效归因于内源性合成的MHC II限制的肿瘤肽直接呈递给CD4 + T细胞。因为疫苗细胞缺乏恒定链,所以我们假设,与专业APC不同,新合成的MHC II分子的肽结合槽可能易于进入肽段,从而使新合成的MHC II分子结合在蛋白酶体中生成的肽。并通过TAP复合物转运到内质网。为了检验该假设,我们比较了多个转染了I-A k基因的TAP阴性和TAP阳性肿瘤细胞克隆的Ag呈递活性,以及​​针对内质网或细胞质的模型Ag鸡蛋蛋白溶菌酶。缺少TAP不能减少3种鸡蛋清溶菌酶表位的Ag呈递。同样,用蛋白酶体和自噬抑制剂处理的细胞与未处理的细胞一样有效。相反,阻断内体功能的药物会显着抑制Ag呈递。共培养实验表明,疫苗细胞不会释放内源性合成分子,这些分子随后会在胞体区室中被内吞和加工。总体而言,这些数据表明,MHC II限制性内源性合成表位的疫苗细胞呈递是通过独立于蛋白酶体和TAP复合物的机制发生的,并使用与经典内体途径重叠的途径来呈递外源性合成分子。

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