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MHC I类限制性结核分枝杆菌表位的高通量鉴定及基于树突状细胞的功能验证

High-throughput identification and dendritic cell-based functional validation of MHC class I-restricted Mycobacterium tuberculosis epitopes.

作者信息

Nair Smita K, Tomaras Georgia D, Sales Ana Paula, Boczkowski David, Chan Cliburn, Plonk Kelly, Cai Yongting, Dannull Jens, Kepler Thomas B, Pruitt Scott K, Weinhold Kent J

机构信息

1] Departments of Surgery, Duke University Medical Center, Durham, NC 27710 [2].

1] Biostatistics and Bioinformatics, Duke University Medical Center, Durham, NC 27710 [2].

出版信息

Sci Rep. 2014 Apr 23;4:4632. doi: 10.1038/srep04632.

Abstract

Emergence of drug-resistant strains of the pathogen Mycobacterium tuberculosis (Mtb) and the ineffectiveness of BCG in curtailing Mtb infection makes vaccine development for tuberculosis an important objective. Identifying immunogenic CD8+ T cell peptide epitopes is necessary for peptide-based vaccine strategies. We present a three-tiered strategy for identifying and validating immunogenic peptides: first, identify peptides that form stable complexes with class I MHC molecules; second, determine whether cytotoxic T lymphocytes (CTLs) raised against the whole protein antigen recognize and lyse target cells pulsed with peptides that passed step 1; third, determine whether peptides that passed step 2, when administered in vivo as a vaccine in HLA-A2 transgenic mice, elicit CTLs that lyse target cells expressing the whole protein antigen. Our innovative approach uses dendritic cells transfected with Mtb antigen-encoding mRNA to drive antigen expression. Using this strategy, we have identified five novel peptide epitopes from the Mtb proteins Apa, Mtb8.4 and Mtb19.

摘要

结核分枝杆菌(Mtb)耐药菌株的出现以及卡介苗在控制Mtb感染方面的无效性使得结核病疫苗的研发成为一个重要目标。对于基于肽的疫苗策略而言,识别具有免疫原性的CD8 + T细胞肽表位是必要的。我们提出了一种用于识别和验证免疫原性肽的三层策略:首先,识别与I类MHC分子形成稳定复合物的肽;其次,确定针对全蛋白抗原产生的细胞毒性T淋巴细胞(CTL)是否识别并裂解用通过第一步的肽脉冲处理的靶细胞;第三,确定当在HLA - A2转基因小鼠体内作为疫苗施用时,通过第二步的肽是否引发裂解表达全蛋白抗原的靶细胞的CTL。我们的创新方法使用转染了编码Mtb抗原的mRNA的树突状细胞来驱动抗原表达。使用这种策略,我们从Mtb蛋白Apa、Mtb8.4和Mtb19中鉴定出了五个新的肽表位。

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