Novel MHC Class I Structures on Exosomes

  • Lynch S
  • Santos S
  • Campbell E
  • et al.
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Abstract

Exosomes are nanometer-sized vesicles released by a number of cell types including those of the immune system, and often contain numerous immune recognition molecules including MHC molecules. We demonstrate in this study that exosomes can display a significant proportion of their MHC class I (MHC I) content in the form of disulfide-linked MHC I dimers. These MHC I dimers can be detected after release from various cell lines, human monocyte-derived dendritic cells, and can also be found in human plasma. Exosome-associated dimers exhibit novel characteristics which include 1) being composed of folded MHC I, as detected by conformational-dependent Abs, and 2) dimers forming between two different MHC I alleles. We show that dimer formation is mediated through cysteine residues located in the cytoplasmic tail domains of many MHC I molecules, and is associated with a low level of glutathione in exosomes when compared with whole cell lysates. We propose these exosomal MHC I dimers as novel structures for recognition by immune receptors.

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APA

Lynch, S., Santos, S. G., Campbell, E. C., Nimmo, A. M. S., Botting, C., Prescott, A., … Powis, S. J. (2009). Novel MHC Class I Structures on Exosomes. The Journal of Immunology, 183(3), 1884–1891. https://doi.org/10.4049/jimmunol.0900798

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