Kraemer Thomas, Celik Alexander A, Huyton Trevor, Kunze-Schumacher Heike, Blasczyk Rainer, Bade-Döding Christina
Institute for Transfusion Medicine, Hannover Medical School, 30625 Hannover, Germany.
Stem Cells Int. 2015;2015:346714. doi: 10.1155/2015/346714. Epub 2015 Aug 12.
The HLA-E locus encodes a nonclassical class Ib molecule that serves many immune functions from inhibiting NK cells to activating CTLs. Structural analysis of HLA-E/NKG2A complexes visualized fine-tuning of protective immune responses through AA interactions between HLA-E, the bound peptide, and NKG2A/CD94. A loss of cellular protection through abrogation of the HLA-E/NKG2A engagement is dependent on the HLA-E bound peptide. The role of HLA-E in posttransplant outcomes is not well understood but might be attributed to its peptide repertoire. To investigate the self-peptide repertoire of HLA-E (∗) 01:01 in the absence of protective HLA class I signal peptides, we utilized soluble HLA technology in class I negative LCL cells in order to characterize HLA-E (∗) 01:01-bound ligands by mass-spectrometry. To understand the immunological impact of these analyzed ligands on NK cell reactivity, we performed cellular assays. Synthesized peptides were loaded onto recombinant T2 cells expressing HLA-E (∗) 01:01 molecules and applied in cytotoxicity assays using the leukemia derived NK cell line (NKL) as effector. HLA-E in complex with the self-peptides demonstrated a shift towards cytotoxicity and a loss of cell protection. Our data highlights the fact that the HLA-E-peptidome is not as restricted as previously thought and support the suggestion of a posttransplant role for HLA-E.
HLA-E基因座编码一种非经典的Ib类分子,它具有多种免疫功能,从抑制自然杀伤细胞到激活细胞毒性T淋巴细胞。对HLA-E/NKG2A复合物的结构分析表明,通过HLA-E、结合肽和NKG2A/CD94之间的氨基酸相互作用,可以对保护性免疫反应进行微调。通过废除HLA-E/NKG2A相互作用而导致的细胞保护丧失取决于与HLA-E结合的肽。HLA-E在移植后结果中的作用尚未完全了解,但可能归因于其肽库。为了在没有保护性HLA I类信号肽的情况下研究HLA-E()01:01的自身肽库,我们在I类阴性LCL细胞中利用可溶性HLA技术,通过质谱来表征与HLA-E()01:01结合的配体。为了了解这些分析的配体对自然杀伤细胞反应性的免疫影响,我们进行了细胞试验。将合成肽加载到表达HLA-E(*)01:01分子的重组T2细胞上,并使用白血病衍生的自然杀伤细胞系(NKL)作为效应细胞进行细胞毒性试验。与自身肽形成复合物的HLA-E表现出细胞毒性的转变和细胞保护的丧失。我们的数据突出了这样一个事实,即HLA-E肽组不像以前认为的那样受到限制,并支持了HLA-E在移植后发挥作用的观点。