Department of Hematology, VU Institute for Cancer and Immunology, VU University Medical Center, Amsterdam, The Netherlands.
PLoS One. 2012;7(4):e34649. doi: 10.1371/journal.pone.0034649. Epub 2012 Apr 26.
Antigen presentation by HLA class I (HLA-I) and HLA class II (HLA-II) complexes is achieved by proteins that are specific for their respective processing pathway. The invariant chain (Ii)-derived peptide CLIP is required for HLA-II-mediated antigen presentation by stabilizing HLA-II molecules before antigen loading through transient and promiscuous binding to different HLA-II peptide grooves. Here, we demonstrate alternative binding of CLIP to surface HLA-I molecules on leukemic cells. In HLA-II-negative AML cells, we found plasma membrane display of the CLIP peptide. Silencing Ii in AML cells resulted in reduced HLA-I cell surface display, which indicated a direct role of CLIP in the HLA-I antigen presentation pathway. In HLA-I-specific peptide eluates from B-LCLs, five Ii-derived peptides were identified, of which two were from the CLIP region. In vitro peptide binding assays strikingly revealed that the eluted CLIP peptide RMATPLLMQALPM efficiently bound to four distinct HLA-I supertypes (-A2, -B7, -A3, -B40). Furthermore, shorter length variants of this CLIP peptide also bound to these four supertypes, although in silico algorithms only predicted binding to HLA-A2 or -B7. Immunization of HLA-A2 transgenic mice with these peptides did not induce CTL responses. Together these data show a remarkable promiscuity of CLIP for binding to a wide variety of HLA-I molecules. The found participation of CLIP in the HLA-I antigen presentation pathway could reflect an aberrant mechanism in leukemic cells, but might also lead to elucidation of novel processing pathways or immune escape mechanisms.
抗原呈递由 HLA Ⅰ类(HLA-I)和 HLA Ⅱ类(HLA-II)复合物通过特异性其各自加工途径的蛋白来实现。不变链(Ii)衍生的肽 CLIP 对于 HLA-II 介导的抗原呈递是必需的,通过在抗原加载之前与不同的 HLA-II 肽槽短暂且随意地结合,来稳定 HLA-II 分子。在这里,我们证明了 CLIP 与白血病细胞表面 HLA-I 分子的替代结合。在 HLA-II 阴性的 AML 细胞中,我们发现 CLIP 肽在质膜上显示。在 AML 细胞中沉默 Ii 导致 HLA-I 细胞表面表达减少,这表明 CLIP 在 HLA-I 抗原呈递途径中具有直接作用。在 B-LCL 中的 HLA-I 特异性肽洗脱物中,鉴定出五个源自 Ii 的肽,其中两个来自 CLIP 区域。在体外肽结合测定中,令人惊讶地发现,洗脱的 CLIP 肽 RMATPLLMQALPM 能够有效地与四个不同的 HLA-I 超型(-A2、-B7、-A3、-B40)结合。此外,该 CLIP 肽的较短长度变体也与这四个超型结合,尽管计算算法仅预测与 HLA-A2 或 -B7 结合。用这些肽免疫 HLA-A2 转基因小鼠并未诱导 CTL 反应。这些数据共同表明 CLIP 与各种 HLA-I 分子结合的显著混杂性。在白血病细胞中发现的 CLIP 参与 HLA-I 抗原呈递途径可能反映了异常机制,但也可能导致新的加工途径或免疫逃逸机制的阐明。