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MHC I 肽加载复合物中质量控制的分子基础。

Molecular basis of MHC I quality control in the peptide loading complex.

机构信息

Institute of Biochemistry, Biocenter, Goethe University Frankfurt, Max-von-Laue-Str. 9, 60438, Frankfurt am Main, Germany.

Oxford Glycobiology Institute, Department of Biochemistry, University of Oxford, OX1 3QU, Oxford, UK.

出版信息

Nat Commun. 2022 Aug 10;13(1):4701. doi: 10.1038/s41467-022-32384-z.

Abstract

Major histocompatibility complex class I (MHC I) molecules are central to adaptive immunity. Their assembly, epitope selection, and antigen presentation are controlled by the MHC I glycan through a sophisticated network of chaperones and modifying enzymes. However, the mechanistic integration of the corresponding processes remains poorly understood. Here, we determine the multi-chaperone-client interaction network of the peptide loading complex (PLC) and report the PLC editing module structure by cryogenic electron microscopy at 3.7 Å resolution. Combined with epitope-proofreading studies of the PLC in near-native lipid environment, these data show that peptide-receptive MHC I molecules are stabilized by multivalent chaperone interactions including the calreticulin-engulfed mono-glucosylated MHC I glycan, which only becomes accessible for processing by α-glucosidase II upon loading of optimal epitopes. Our work reveals allosteric coupling between peptide-MHC I assembly and glycan processing. This inter-process communication defines the onset of an adaptive immune response and provides a prototypical example of the tightly coordinated events in endoplasmic reticulum quality control.

摘要

主要组织相容性复合体 I 类 (MHC I) 分子是适应性免疫的核心。它们的组装、表位选择和抗原呈递受 MHC I 糖通过一个复杂的伴侣蛋白和修饰酶网络控制。然而,相应过程的机械整合仍然知之甚少。在这里,我们确定了肽加载复合物 (PLC) 的多伴侣-客户相互作用网络,并通过低温电子显微镜以 3.7 Å 的分辨率报告了 PLC 编辑模块结构。结合 PLC 在近天然脂质环境中的表位校对研究,这些数据表明,多价伴侣蛋白相互作用稳定了具有接受肽能力的 MHC I 分子,包括被钙网蛋白包被的单糖基化 MHC I 聚糖,只有在加载最佳表位时,α-葡萄糖苷酶 II 才能使其对加工变得可及。我们的工作揭示了肽-MHC I 组装和糖基化加工之间的变构偶联。这种过程间的通讯定义了适应性免疫反应的开始,并提供了内质网质量控制中紧密协调事件的典型范例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b8c/9365787/a90c7adc2c00/41467_2022_32384_Fig1_HTML.jpg

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