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CD1d-unrestricted NKT cells are endowed with a hybrid function far superior than that of iNKT cells
Authors:Alexander R. Farr  Weisheng Wu  Bongkum Choi  James D. Cavalcoli  Yasmina Laouar
Affiliation:Departments of aMicrobiology and Immunology and;bComputational Medicine and Bioinformatics, University of Michigan School of Medicine, Ann Arbor, MI, 48109
Abstract:Invariant natural killer T (iNKT) cells to date represent the best example of cells known to have a hybrid function, representing both innate and adaptive immunity. Shared phenotypic similarities with NK cells together with a rapid response to a cytokine stimulus and a productive TCR engagement are the features that underline the hybrid nature of iNKT cells. Using these criteria, we provide molecular and functional evidence demonstrating that CD1d-independent (CD1dind) NKT cells, a population of CD1d-unrestricted NKT cells, are endowed with a hybrid function far superior to that of iNKT cells: (i) an extensive shared program with NK cells, (ii) a closer Euclidian distance with NK cells, and (iii) the ability to respond to innate stimuli (Poly:IC) with cytotoxic potential in the same manner as NK cells identify a hybrid feature in CD1dindNKT cells that truly fulfills the dual function of an NK and a T cell. Our finding that CD1dindNKT cells are programmed to act like NK cells in response to innate signals while being capable of adaptive responses is unprecedented, and thus might reemphasize CD1d-unrestricted NKT cells as a subset of lymphocytes that could affect biological processes of antimicrobial and tumor immunity in a unique way.Natural killer T (NKT) cells are increasingly regarded as cells endowed with a hybrid function between an NK cell and a T cell (1, 2). The current classification of NKT cells places them into three categories: type I, type II, and NKT-like cells (1). Type I comprises invariant NKT (iNKT) cells that recognize the glycolipid α-galactosylceramide (α-GalCer) loaded into the MHC class I molecule, CD1d, and contain an invariant TCR repertoire of Vα14-Jα18 (35). Type II NKT cells are also CD1d dependent but do not respond to α-GalCer in the same way as iNKT cells do (6, 7). NKT-like cells encompass all other NKT cells and are CD1d independent (CD1dind) (8); they are by far the most heterogeneous and the least characterized.Recent studies have increasingly shown a shared expression of NK cell-related receptors on other effector cells. CD8+ T cells are known to up-regulate NK markers, such as NK1.1, and can even respond quickly like NK cells (9). Other work has described NKT cells that express NKp46 (10), a marker selectively associated with conventional NK cells and NK22 cells in the gut (11). Moreover, γδ T cells have been shown to express NK markers and display an innate-like response (12). Collectively, these reports converge to raise the following key questions. What qualifies as an NKT cell? Do the cells need to express only NK1.1 and CD3 to be eligible for NKT nomenclature? With the continuous development of both NK and T-cell fields, the simplistic definition that NKT cells are subsets of T cells that express the NK1.1 marker is becoming increasingly misleading and even inaccurate. For instance, NK1.1 complex is expressed in the BALB/c strain but there are allelic divergences with the polymorphism leading to the PK136 antibody not reacting to the BALB/c NK.1.1 (NKrp1) complex (13). This definition is also limited in the C57BL/6 strain because of the discovery of NK1.1CD1d+ NKT cells (14). Although phenotypic similarities can be misleading, the criteria that best describes an NKT cell is the ability to perform with a hybrid function between an NK cell and a T cell (2).Nonetheless, the concept of hybrid function is also an elusive notion allowing for a gradient of functions. A number of works refer to an NKT hybrid function as the ability of a T cell with phenotypic similarities to NK cells to perform with innate-like response. The best example of cells endowed with a hybrid NKT cell function are thought to be iNKT cells (2). In this study, we provide molecular and functional evidence demonstrating that CD1dindNKT cells—a population of MHC-unrestricted T cells—are endowed with a hybrid function that associates them to the NK cell lineage in a manner far superior to the known link between NK and iNKT cells. An extensive shared program with NK cells, a similarity in the gene expression profile with NK cells, and their ability to respond (like NK cells) not only to cytokine signals (IL-12 plus IL-18) but also to innate stimuli [in vivo treatment with Poly:IC (Fisher)] with massive production of key effector players of the cytotoxic pathway collectively identify a hybrid feature in CD1dindNKT cells that uniquely fulfills the function of an NK cell and a T cell.
Keywords:granzyme B   CD1d   MHC   NK receptors
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