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Isolation of Uterine Innate Lymphoid Cells for Analysis by Flow Cytometry
Published on: October 14, 2021
A point mutation in the Ncr1 signal peptide impairs the development of innate lymphoid cell subsets
Francisca F Almeida1,2, Sara Tognarelli3,4, Antoine Marçais5
1Division of Molecular Immunology, Walter and Eliza Hall Institute of Medical Research, Melbourne, Victoria, Australia.
Abstract:
NKp46 (CD335) is a surface receptor shared by both human and mouse natural killer (NK) cells and innate lymphoid cells (ILCs) that transduces activating signals necessary to eliminate virus-infected cells and tumors. Here, we describe a spontaneous point mutation of cysteine to arginine (C14R) in the signal peptide of the NKp46 protein in congenic Ly5.1 mice and the newly generated NCRB6C14R strain. Ly5.1C14R NK cells expressed similar levels of Ncr1 mRNA as C57BL/6, but showed impaired surface NKp46 and reduced ability to control melanoma tumors in vivo. Expression of the mutant NKp46C14R in 293T cells showed that NKp46 protein trafficking to the cell surface was compromised. Although Ly5.1C14R mice had normal number of NK cells, they showed an increased number of early maturation stage NK cells. CD49a+ILC1s were also increased but these cells lacked the expression of TRAIL. ILC3s that expressed NKp46 were not detectable and were not apparent when examined by T-bet expression. Thus, the C14R mutation reveals that NKp46 is important for NK cell and ILC differentiation, maturation and function. Significance Innate lymphoid cells (ILCs) play important roles in immune protection. Various subsets of ILCs express the activating receptor NKp46 which is capable of recognizing pathogen derived and tumor ligands and is necessary for immune protection. Here, we describe a spontaneous point mutation in the signal peptide of the NKp46 protein in congenic Ly5.1 mice which are widely used for tracking cells in vivo. This Ncr1 C14R mutation impairs NKp46 surface expression resulting in destabilization of Ncr1 and accumulation of NKp46 in the endoplasmic reticulum. Loss of stable NKp46 expression impaired the maturation of NKp46+ ILCs and altered the expression of TRAIL and T-bet in ILC1 and ILC3, respectively.
Insights
A mutation in NKp46 (CD335) impairs its surface expression, affecting natural killer (NK) cell and innate lymphoid cell (ILC) maturation and anti-tumor immunity. This impacts immune cell function and differentiation.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- NKp46 (CD335) is a crucial activating receptor on natural killer (NK) cells and innate lymphoid cells (ILCs).
- It plays a vital role in recognizing and eliminating virus-infected cells and tumors.
- NKp46 is essential for immune protection against pathogens and cancer.
Purpose of the Study:
- To investigate the functional consequences of a spontaneous NKp46 signal peptide mutation (C14R) in mice.
- To determine the role of NKp46 in NK cell and ILC differentiation, maturation, and anti-tumor activity.
- To analyze the impact of impaired NKp46 surface expression on immune cell populations and function.
Main Methods:
- Generation and characterization of congenic Ly5.1 mice and the NCRB6C14R strain with the C14R mutation.
- Analysis of NKp46 surface expression, Ncr1 mRNA levels, and protein trafficking in mutant cells.
- Assessment of NK cell and ILC populations, maturation stages, and expression of key markers (TRAIL, T-bet) in vivo.
Main Results:
- The C14R mutation in NKp46's signal peptide compromised its surface expression and trafficking.
- Mutant NK cells showed reduced ability to control melanoma tumors in vivo.
- Increased early maturation NK cells and CD49a+ILC1s were observed, with altered TRAIL and T-bet expression in ILC subsets.
Conclusions:
- The C14R mutation highlights NKp46's critical role in NK cell and ILC differentiation and maturation.
- Impaired NKp46 surface expression destabilizes the receptor and affects immune cell function.
- This study provides insights into the molecular mechanisms governing innate immune cell development and anti-tumor responses.
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