Ly49C Impairs NK Cell Memory in Mouse Cytomegalovirus Infection

  • Forbes C
  • Scalzo A
  • Degli-Esposti M
  • et al.
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Abstract

NK cells possess inhibitory receptors that are responsible for self-MHC class I recognition; beyond their inhibitory function, accumulating evidence indicates that such receptors confer NK cell functional competence through an unclear process termed “licensing.” Ly49C is the main self-specific inhibitory Ly49 receptor in H-2b C57BL/6 (B6) mice. We used B6 Ly49C-transgenic and B6 β2 microglobulin (β2m)-knockout Ly49C-transgenic mice to investigate the impact of licensing through this inhibitory receptor in precursor and mature NK cells. We found that self-specific inhibitory receptors affected NK cell precursor survival and proliferation at particular developmental stages in an MHC class I–dependent manner. The presence of Ly49C impacted the NK cell repertoire in a β2m-dependent manner, with reduced Ly49A+, Ly49G2+, and Ly49D+ subsets, an increased DNAM-1+ subset, and higher NKG2D expression. Licensed NK cells displayed a skewed distribution of the maturation stages, which was characterized by differential CD27 and CD11b expression, toward the mature phenotypes. We found that Ly49C-mediated licensing induced a split effect on NK cell functions, with increased cytokine-production capabilities following engagement of various activating receptors while cytotoxicity remained unchanged. Analysis of licensed NK cell functions in vivo, in a system of mouse CMV infection, indicated that licensing did not play a major role in the NK cell antiviral response during acute infection, but it strongly impaired the generation and/or persistence of memory NK cells. This study unravels multifaceted effects of licensing on NK cell populations and their functions.

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Forbes, C. A., Scalzo, A. A., Degli-Esposti, M. A., & Coudert, J. D. (2016). Ly49C Impairs NK Cell Memory in Mouse Cytomegalovirus Infection. The Journal of Immunology, 197(1), 128–140. https://doi.org/10.4049/jimmunol.1600199

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