Braner M, Koller N, Knauer J, Herbring V, Hank S, Wieneke R, Tampé R
Institute of Biochemistry , Biocenter , Goethe University Frankfurt , Max-von-Laue Str. 9 , 60438 Frankfurt/M. , Germany . Email:
Chem Sci. 2018 Dec 17;10(7):2001-2005. doi: 10.1039/c8sc04863k. eCollection 2019 Feb 21.
The immune system makes use of major histocompatibility complex class I (MHC I) molecules to present peptides to other immune cells, which can evoke an immune response. Within this process of antigen presentation, the MHC I peptide loading complex, consisting of a transporter associated with antigen processing TAP, MHC I, and chaperones, is key to the initiation of immune response by shuttling peptides from the cytosol into the ER lumen. However, it is still enigmatic how the flux of antigens is precisely coordinated in time and space, limiting our understanding of antigen presentation pathways. Here, we report on the development of a synthetic viral TAP inhibitor that can be cleaved by light. This photo-conditional inhibitor shows temporal blockade of TAP-mediated antigen translocation, which is unleashed upon illumination. The recovery of TAP activity was monitored at single-cell resolution both in human immune cell lines and primary cells. The development of a photo-conditional TAP inhibitor thus expands the repertoire of chemical intervention tools for immunological processes.
免疫系统利用主要组织相容性复合体I类(MHC I)分子将肽段呈递给其他免疫细胞,从而引发免疫反应。在这个抗原呈递过程中,由与抗原加工相关的转运体TAP、MHC I和伴侣蛋白组成的MHC I肽装载复合体,通过将肽段从细胞质转运到内质网腔,是启动免疫反应的关键。然而,抗原通量如何在时间和空间上精确协调仍然是个谜,这限制了我们对抗原呈递途径的理解。在这里,我们报告了一种可被光裂解的合成病毒TAP抑制剂的开发。这种光条件抑制剂显示出对TAP介导的抗原转运的时间性阻断,光照后这种阻断会解除。在人类免疫细胞系和原代细胞中,均以单细胞分辨率监测TAP活性的恢复情况。因此,光条件TAP抑制剂的开发扩展了用于免疫过程的化学干预工具库。