Kim Eunkyung, Kwak Heechun, Ahn Kwangseog
National Creative Research Initiative Center for Antigen Presentation, Department of Biological Sciences, Seoul National University, Seoul, Korea.
J Immunol. 2009 Dec 1;183(11):7379-87. doi: 10.4049/jimmunol.0901489. Epub 2009 Nov 16.
Antigenic peptides presented by MHC class I molecules are generated mainly by the proteasome in the cytosol. Several cytosolic aminopeptidases further trim proteasomal products to form mature epitopes or individual amino acids. However, the distinct function of cytosolic aminopeptidases in MHC class I Ag processing remains to be elucidated. In this study, we show that cytosolic aminopeptidases differentially affect the cell surface expression of MHC class I molecules in an allele-dependent manner in human cells. In HeLa cells, knockdown of puromycin-sensitive aminopeptidase (PSA) by RNA interference inhibited optimal peptide loading of MHC class I molecules, and their cell surface expression was correspondingly reduced. In contrast, depletion of bleomycin hydrolase (BH) enhanced optimal peptide loading and cell surface expression of MHC class I molecules. We did not find evidence on the effect of leucine aminopeptidase knockdown on the MHC class I Ag presentation. Moreover, we demonstrated that PSA and BH influence the peptide loading and surface expression of MHC class I in an allele-specific manner. In the absence of either PSA or BH, the surface expression and peptide-dependent stability of HLA-A68 were reduced, whereas those of HLA-B15 were enhanced. The surface expression and peptide-dependent stability of HLA-A3 were enhanced by BH knockdown, although those of HLA-B8 were increased in PSA-depleted conditions.
主要由胞质溶胶中的蛋白酶体生成由MHC I类分子呈递的抗原肽。几种胞质氨基肽酶进一步修剪蛋白酶体产物以形成成熟表位或单个氨基酸。然而,胞质氨基肽酶在MHC I类抗原加工中的独特功能仍有待阐明。在本研究中,我们表明,胞质氨基肽酶以等位基因依赖的方式在人类细胞中差异地影响MHC I类分子的细胞表面表达。在HeLa细胞中,通过RNA干扰敲低嘌呤霉素敏感氨基肽酶(PSA)抑制了MHC I类分子的最佳肽负载,并且它们的细胞表面表达相应降低。相反,博来霉素水解酶(BH)的缺失增强了MHC I类分子的最佳肽负载和细胞表面表达。我们没有发现亮氨酸氨基肽酶敲低对MHC I类抗原呈递有影响的证据。此外,我们证明PSA和BH以等位基因特异性方式影响MHC I类的肽负载和表面表达。在没有PSA或BH的情况下,HLA-A68的表面表达和肽依赖性稳定性降低,而HLA-B15的则增强。BH敲低增强了HLA-A3的表面表达和肽依赖性稳定性,尽管在PSA缺失的条件下HLA-B8的增加了。