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NKp46 Calibrates Tumoricidal Potential of Type 1 Innate Lymphocytes by Regulating TRAIL Expression
Gleb Turchinovich1,2, Stefan Ganter3, Anne Bärenwaldt3,2
1Department of Biomedicine, University of Basel, 4058 Basel, Switzerland; and gleb.turchinovich@unibas.ch.
Abstract:
NK cells are a subset of group 1 innate lymphocytes that recognize and eliminate virus-infected and transformed cells. During the course of their development, NK cells acquire a repertoire of activating and inhibitory receptors, which ultimately define their reactivity against target cells. The array of receptors and their specificity during early developmental stages will control and imprint functional properties of NK cells, a process known as "NK cell education." Innate lymphoid cells (ILCs) are a diverse group of lymphocytes, which, like NK cells, do not rely on somatically rearranged Ag receptors for recognition. Among ILC subsets, ILC1s are most like NK cells functionally. Prototypic ILC1s reside in the liver, and a large part of their function is attributed to the expression of TRAIL, a TNF superfamily member with a well-documented antitumor activity. In this article, we show that TRAIL expression on mouse ILC1s is controlled by an activating receptor NKp46, which has been previously shown to control NK cell education. In the absence of NKp46, ILC1s fail to express normal levels of TRAIL on the surface, which results in diminished cytotoxicity toward TRAIL receptor-positive targets. To our knowledge, these findings provide the first evidence of a role of NKp46 in ILC1s that calibrates their antitumor response.
Insights
Natural killer (NK) cells and innate lymphoid cells (ILCs) utilize the NKp46 receptor to regulate antitumor activity. NKp46 controls TRAIL expression on ILC1s, impacting their ability to eliminate cancer cells.
Area of Science:
- Immunology
- Cell Biology
- Innate Immunity
Background:
- Natural killer (NK) cells and innate lymphoid cells (ILCs) are crucial components of the immune system.
- NK cell education, a process involving receptor acquisition during development, shapes NK cell function.
- Group 1 ILCs (ILC1s), particularly liver-resident ILC1s, are functionally similar to NK cells and express TRAIL for antitumor activity.
Purpose of the Study:
- To investigate the role of the activating receptor NKp46 in regulating the function of ILC1s.
- To determine if NKp46 influences TRAIL expression and subsequent cytotoxicity of ILC1s.
Main Methods:
- Analysis of TRAIL expression on mouse ILC1s.
- Assessment of ILC1 cytotoxicity against TRAIL receptor-positive target cells in the presence and absence of NKp46.
Main Results:
- NKp46 was identified as a key regulator of TRAIL expression on mouse ILC1s.
- Absence of NKp46 led to reduced surface TRAIL levels on ILC1s.
- ILC1s lacking NKp46 exhibited diminished cytotoxicity against TRAIL receptor-positive targets.
Conclusions:
- NKp46 plays a critical role in calibrating the antitumor response of ILC1s by controlling TRAIL expression.
- These findings establish a novel function for NKp46 in ILC1 biology, linking NK cell education principles to ILC1 antitumor immunity.
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