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内质网后不稳定 MHC I 类分子的拯救需要蛋白前转化酶 PC7。

Post-endoplasmic reticulum rescue of unstable MHC class I requires proprotein convertase PC7.

机构信息

Department of Immunobiology, Yale University School of Medicine, New Haven, CT 06519, USA.

出版信息

J Immunol. 2010 Mar 15;184(6):2985-98. doi: 10.4049/jimmunol.0900308. Epub 2010 Feb 17.

DOI:10.4049/jimmunol.0900308
PMID:20164418
Abstract

The function of the peptide-loading complex (PLC) is to facilitate loading of MHC class I (MHC I) molecules with antigenic peptides in the endoplasmic reticulum and to drive the selection of these ligands toward a set of high-affinity binders. When the PLC fails to perform properly, as frequently observed in virus-infected or tumor cells, structurally unstable MHC I peptide complexes are generated, which are prone to disintegrate instead of presenting Ags to cytotoxic T cells. In this study we show that a second quality control checkpoint dependent on the serine protease proprotein convertase 7 (PC7) can rescue unstable MHC I, whereas the related convertase furin is completely dispensable. Cells with a malfunctioning PLC and silenced for PC7 have substantially reduced MHC I surface levels caused by high instability and significantly delayed surface accumulation of these molecules. Instead of acquiring stability along the secretory route, MHC I appears to get largely routed to lysosomes for degradation in these cells. Moreover, mass spectrometry analysis provides evidence that lack of PLC quality control and/or loss of PC7 expression alters the MHC I-presented peptide profile. Finally, using exogenously applied peptide precursors, we show that liberation of MHC I epitopes may directly require PC7. We demonstrate for the first time an important function for PC7 in MHC I-mediated Ag presentation.

摘要

肽装载复合物(PLC)的功能是促进 MHC I(MHC I)分子在内质网中与抗原肽的装载,并将这些配体的选择推向一组高亲和力的结合物。当 PLC 不能正常工作时,如在病毒感染或肿瘤细胞中经常观察到的那样,会产生结构不稳定的 MHC I 肽复合物,这些复合物容易解体而不是向细胞毒性 T 细胞呈递抗原。在这项研究中,我们表明,第二个质量控制检查点依赖于丝氨酸蛋白酶原蛋白转化酶 7(PC7),可以挽救不稳定的 MHC I,而相关的转化酶 furin 则完全不需要。PLC 功能失调且 PC7 沉默的细胞 MHC I 表面水平显著降低,这是由于高度不稳定性和这些分子在表面的积累显著延迟所致。在这些细胞中,MHC I 似乎主要被途径到溶酶体进行降解,而不是沿着分泌途径获得稳定性。此外,质谱分析提供的证据表明,缺乏 PLC 质量控制和/或丧失 PC7 表达会改变 MHC I 呈递的肽谱。最后,我们使用外源应用的肽前体表明,MHC I 表位的释放可能直接需要 PC7。我们首次证明了 PC7 在 MHC I 介导的 Ag 呈递中的重要功能。

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