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MHC class I antigen processing distinguishes endogenous antigens based on their translation from cellular vs. viral mRNA

机译:MHC I类抗原加工根据其翻译与细胞和病毒mRNA的区别来区分内源性抗原

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摘要

To better understand the generation of MHC class I-associated peptides, we used a model antigenic protein whose proteasome-mediated degradation is rapidly and reversibly controlled by Shield-1, a cell-permeant drug. When expressed from a stably transfected gene, the efficiency of antigen presentation is ∼2%, that is, one cell-surface MHC class I–peptide complex is generated for every 50 folded source proteins degraded upon Shield-1 withdrawal. By contrast, when the same protein is expressed by vaccinia virus, its antigen presentation efficiency is reduced ∼10-fold to values similar to those reported for other vaccinia virus-encoded model antigens. Virus infection per se does not modify the efficiency of antigen processing. Rather, the efficiency difference between cellular and virus-encoded antigens is based on whether the antigen is synthesized from transgene- vs. virus-encoded mRNA. Thus, class I antigen-processing machinery can distinguish folded proteins based on the precise details of their synthesis to modulate antigen presentation efficiency.
机译:为了更好地了解与MHC I类相关的肽的生成,我们使用了一种模型抗原蛋白,其蛋白酶体介导的降解受可透过细胞的药物Shield-1迅速而可逆地控制。当从稳定转染的基因表达时,抗原呈递的效率约为2%,也就是说,在Shield-1退出后降解的每50个折叠源蛋白中都会产生一个细胞表面的MHC I类肽复合物。相反,当痘苗病毒表达相同的蛋白质时,其抗原呈递效率降低约10倍,达到与其他痘苗病毒编码的模型抗原所报道的相似。病毒感染本身不会改变抗原加工的效率。而是,细胞抗原和病毒编码抗原之间的效率差异是基于抗原是否由转基因编码与病毒编码的mRNA合成而成。因此,I类抗原加工机器可以根据折叠蛋白的合成精确细节来区分折叠蛋白,从而调节抗原提呈效率。

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