Laboratory of Viral Diseases, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD 20892, USA.
J Immunol. 2010 Feb 1;184(3):1419-24. doi: 10.4049/jimmunol.0901907. Epub 2009 Dec 28.
The defective ribosomal product (DRiP) hypothesis of endogenous Ag processing posits that rapidly degraded forms of nascent proteins are a major source of peptide ligands for MHC class I molecules. Although there is broad experimental support for the DRiP hypothesis, careful kinetic analysis of the generation of defined peptide class I complexes has been limited to studies of recombinant vaccinia viruses expressing genes derived from other organisms. In this study, we show that insertion of the SIINFEKL peptide into the stalk of influenza A virus neuraminidase (NA) does not detectably modify NA folding, degradation, transport, or sp. act. when expressed in its natural context of influenza A virus infection. Using the 25-D1.16 mAb specific for K(b)-SIINFEKL to precisely quantitate cell surface complexes by flow cytometry, we demonstrate that SIINFEKL is generated in complete lockstep with initiation and abrogation of NA biosynthesis in both L-K(b) fibroblast cells and DC2.4 dendritic/monocyte cells. SIINFEKL presentation requires active proteasomes and TAP, consistent with its generation from a cytosolic DRiP pool. From the difference in the shutoff kinetics of K(b)-SIINFEKL complex expression following protein synthesis versus proteasome inhibition, we estimate that the t(1/2) of the biosynthetic source of NA peptide is approximately 5 min. These observations extend the relevance of the DRiP hypothesis to viral proteins generated in their natural context.
内源性 Ag 加工的缺陷核糖体产物 (DRiP) 假说认为,新生蛋白质的快速降解形式是 MHC Ⅰ类分子肽配体的主要来源。尽管 DRiP 假说得到了广泛的实验支持,但对定义的肽类 I 复合物生成的精确动力学分析仅限于研究表达来自其他生物体基因的重组痘苗病毒。在这项研究中,我们表明,将 SIINFEKL 肽插入流感 A 病毒神经氨酸酶 (NA) 的茎中,在以流感 A 病毒感染的天然背景下表达时,不会明显改变 NA 的折叠、降解、转运或 sp.act.。使用针对 K(b)-SIINFEKL 的 25-D1.16 mAb 通过流式细胞术精确定量细胞表面复合物,我们证明 SIINFEKL 的产生与 L-K(b)成纤维细胞和 DC2.4 树突状/单核细胞中的 NA 生物合成的起始和终止完全同步。SIINFEKL 呈递需要活性蛋白酶体和 TAP,与其来自细胞溶质 DRiP 池的生成一致。从蛋白质合成与蛋白酶体抑制后 K(b)-SIINFEKL 复合物表达的关闭动力学差异中,我们估计 NA 肽生物合成来源的 t(1/2)约为 5 分钟。这些观察结果将 DRiP 假说的相关性扩展到在其自然环境中产生的病毒蛋白。