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Updated: Jan 29, 2026

Measuring Mitochondrial Function of Naïve and Effector CD8 T Cells
Published on: March 28, 2025
NKG2D signaling certifies effector CD8 T cells for memory formation
Cynthia Perez1, Kushal Prajapati1, Brianna Burke1
1Oncology Institute, Cardinal Bernardin Cancer Center, Loyola University Chicago, Maywood, IL, USA.
Insights
Natural Killer Group 2D (NKG2D) signaling during CD8 T cell effector response certifies cells for memory. Blocking NKG2D creates defective memory cells, impairing anti-tumor immunity.
Area of Science:
- Immunology
- Cellular Biology
Background:
- Adaptive immunity relies on memory responses for long-term protection.
- CD8 T cells form the memory compartment, crucial for adaptive immunity.
- Natural Killer Group 2D (NKG2D) is proposed to mediate CD8 T cell memory certification.
Purpose of the Study:
- To investigate the role of NKG2D signaling in certifying CD8 T cells for memory formation.
- To determine if NKG2D signaling during the effector phase is essential for functional memory.
Main Methods:
- NKG2D signaling was blocked in vivo during the effector phase using neutralizing antibodies.
- The impact on memory CD8 T cell formation and function was assessed.
- Both polyclonal and monoclonal CD8 T cell repertoires were analyzed.
Main Results:
- Temporary blockade of NKG2D signaling during the effector phase led to defective memory CD8 T cells.
- These 'uncertified' cells showed altered ribosomal protein S6 and epigenetic modifier expression.
- Defective memory cells failed to provide protection against B16 tumor challenge.
Conclusions:
- NKG2D signaling during the effector phase is critical for developing functional memory CD8 T cells.
- This 'certification' process by NKG2D influences T cell translational and epigenetic programming.
- Disruption of NKG2D-mediated certification results in non-protective memory T cells.
Background:
The development of memory responses is an evolutionary function of the adaptive immune system. We propose that for the immune system to populate the memory compartment with the best-suited CD8 T cells it utilizes a process of certification or molecular accreditation mediated through Natural Killer Group 2D (NKG2D). This process of certification assures that the memory compartment is filled with CD8 T cells that have demonstrated their ability to kill their cognate targets through a two-step process that utilizes T cell receptor (TCR) and NKG2D signaling.
Methods:
One week after immunization with peptide-pulsed dendritic cells, NKG2D signaling was transiently blocked in vivo with a single injection of neutralizing antibodies. Under such conditions, we determined the importance of NKG2D signaling during the effector phase for memory formation without compromising NKG2D signaling at the memory phase. Both open (polyclonal) and closed (monoclonal) CD8 T cell repertoires were studied.
Results:
We show that signaling through NKG2D mediated this certification. Temporary blockade of NKG2D signaling during the effector phase resulted in the formation of highly defective memory CD8 T cells characterized by altered expression of the ribosomal protein S6 and epigenetic modifiers, suggesting modifications in the T cell translational machinery and epigenetic programming. Finally, these uncertified memory cells were not protective against a B16 tumor challenge.
Conclusion:
Signaling through NKG2D during the effector phase (certification) favors the development of functional memory CD8 T cells, a previously undescribed role for NKG2D. Temporary blockade of NKG2D signaling during the effector phase results in the formation of highly defective memory CD8 T cells potentially by affecting the expression of the ribosomal protein S6 and epigenetic modifiers, suggesting alterations in T cell translational machinery and epigenetic programming.
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