Oncode Institute and Department of Cell and Chemical Biology, Leiden University Medical Center, Leiden, Netherlands.
Department of Cell Biology II, Netherlands Cancer Institute, Amsterdam, Netherlands.
J Exp Med. 2018 May 7;215(5):1493-1504. doi: 10.1084/jem.20180156. Epub 2018 Apr 17.
Adaptive immunity is initiated by T cell recognition of specific antigens presented by major histocompatibility complexes (MHCs). MHC multimer technology has been developed for the detection, isolation, and characterization of T cells in infection, autoimmunity, and cancer. Here, we present a simple, fast, flexible, and efficient method to generate many different MHC class I (MHC I) multimers in parallel using temperature-mediated peptide exchange. We designed conditional peptides for HLA-A*02:01 and H-2K that form stable peptide-MHC I complexes at low temperatures, but dissociate when exposed to a defined elevated temperature. The resulting conditional MHC I complexes, either alone or prepared as ready-to-use multimers, can swiftly be loaded with peptides of choice without additional handling and within a short time frame. We demonstrate the ease and flexibility of this approach by monitoring the antiviral immune constitution in an allogeneic stem cell transplant recipient and by analyzing CD8 T cell responses to viral epitopes in mice infected with lymphocytic choriomeningitis virus or cytomegalovirus.
适应性免疫是由 T 细胞识别主要组织相容性复合体 (MHC) 呈现的特定抗原引发的。MHC 多聚体技术已被开发用于检测、分离和鉴定感染、自身免疫和癌症中的 T 细胞。在这里,我们提出了一种简单、快速、灵活和高效的方法,使用温度介导的肽交换来平行生成许多不同的 MHC I (MHC I) 多聚体。我们设计了用于 HLA-A*02:01 和 H-2K 的条件肽,这些肽在低温下形成稳定的肽-MHC I 复合物,但在暴露于特定升高温度时会解离。所得条件 MHC I 复合物,无论是单独存在还是作为即用型多聚体制备,都可以在短时间内快速加载所选的肽,而无需额外处理。我们通过监测异基因干细胞移植受者的抗病毒免疫组成,以及通过分析感染淋巴细胞性脉络丛脑膜炎病毒或巨细胞病毒的小鼠中 CD8 T 细胞对病毒表位的反应,证明了这种方法的简便性和灵活性。