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细胞表面 MHC I 类分子的表达受限于可接受肽的“空”分子的可用性,而不是肽配体的供应。

Cell Surface MHC Class I Expression Is Limited by the Availability of Peptide-Receptive "Empty" Molecules Rather than by the Supply of Peptide Ligands.

机构信息

Department of Biology, Technion-Israel Institute of Technology, Haifa, 32000, Israel.

出版信息

Proteomics. 2018 Jun;18(12):e1700248. doi: 10.1002/pmic.201700248. Epub 2018 Jun 5.

Abstract

While antigen processing and presentation (APP) by the major histocompatibility complex class I (MHC-I) molecules have been extensively studied, a question arises as to whether the level of MHC-I expression is limited by the supply of peptide-receptive (empty) MHC molecules, or by the availability of peptide ligands for loading. To this end, the effect of interferons (IFNs) on the MHC peptidomes of human breast cancer cells (MCF-7) were evaluated. Although all four HLA allotypes of the MCF-7 cells (HLA-A02:01, B18, B44, and C5) present peptides of similar lengths and C-termini, which should be processed similarly by the proteasome and by the APP chaperones, the IFNs induced differential modulation of the HLA-A, B, and C peptidomes. In addition, overexpression of recombinant soluble HLA-A02:01, introduced to compete with the identical endogenous membrane-bound HLA-A02:01 for peptides of the MCF-7 cells, did not alter the expression level or the presented peptidome of the membrane-bound HLA-A*02:01. Taken together, these results indicate that a surplus supply of peptides is available inside the ER for loading onto the MHC-I peptide-receptive molecules, and that cell surface MHC-I expression is likely limited by the availability of empty MHC molecules.

摘要

虽然主要组织相容性复合体 I 类 (MHC-I) 分子的抗原加工和呈递 (APP) 已经得到了广泛的研究,但人们仍然存在一个疑问,即 MHC-I 表达水平是否受到肽接受(空)MHC 分子的供应限制,还是受到肽配体的可用性限制。为此,评估了干扰素 (IFN) 对人乳腺癌细胞 (MCF-7) MHC 肽组的影响。尽管 MCF-7 细胞的所有四种 HLA 同种型 (HLA-A02:01、B18、B44 和 C5) 都呈现出相似长度和 C 末端的肽,这些肽应该通过蛋白酶体和 APP 伴侣类似地加工,但 IFN 诱导了 HLA-A、B 和 C 肽组的差异调节。此外,过表达重组可溶性 HLA-A02:01,引入到与 MCF-7 细胞的相同内源性膜结合 HLA-A02:01 竞争肽,不会改变膜结合 HLA-A*02:01 的表达水平或呈现的肽组。综上所述,这些结果表明,内质网内部有大量的肽可供装载到 MHC-I 肽接受分子上,而细胞表面 MHC-I 表达可能受到空 MHC 分子的可用性限制。

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