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Updated: Jul 13, 2026

A Protocol for the Production of KLRG1 Tetramer
Published on: January 12, 2010
Tumor-associated E-cadherin mutations affect binding to the killer cell lectin-like receptor G1 in humans
Sabrina Schwartzkopff1, Carsten Gründemann, Oliver Schweier
1Institute of Medical Microbiology and Hygiene, Department of Immunology, University of Freiburg, Germany.
Abstract:
The killer cell lectin-like receptor G1 (KLRG1) is expressed by NK cells and memory T cells in man and mice. Cadherins were recently identified as ligands for mouse KLRG1 but ligands for human KLRG1 have not yet been defined. In this study, we first demonstrate that human E-cadherin is a ligand for human KLRG1. This finding is remarkable because human and mouse KLRG1 show only an intermediate degree of homology (57% aa identity). In addition, we show that E-cadherin, expressed on K562 target cells, inhibited polyclonal human NK cells. Inhibition of NK cell function was observed consistently in three independent functional assays but the extent of inhibition was modest and required high expression of E-cadherin on target cells. E-cadherin function is often inactivated during development of human carcinomas and splice-site mutations resulting in in-frame loss of exon 8 or 9 occur frequently in diffuse type gastric carcinomas. Our experiments further revealed that interaction of human KLRG1 to E-cadherin was susceptible to these tumor-associated mutations and that KLRG1(+) NK cells were triggered more easily by K562 target cells carrying these mutations in comparison to target cells expressing wild-type E-cadherin. These results also indicate that the E-cadherin binding sites important for homophilic interaction are also involved in KLRG1 binding. Taken together, these data demonstrate that the main adhesion molecule of epithelial tissue, E-cadherin, is involved in regulation of NK cells in both humans and mice.
Insights
Human E-cadherin is a ligand for killer cell lectin-like receptor G1 (KLRG1), regulating NK cell activity. Tumor-associated mutations in E-cadherin affect this interaction, influencing NK cell responses.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Killer cell lectin-like receptor G1 (KLRG1) is found on NK cells and memory T cells in humans and mice.
- While mouse KLRG1 ligands are known (cadherins), human KLRG1 ligands remained undefined.
Purpose of the Study:
- To identify ligands for human KLRG1.
- To investigate the functional consequences of the human KLRG1-ligand interaction on NK cell activity.
- To explore the impact of tumor-associated mutations on this interaction.
Main Methods:
- Binding assays to confirm E-cadherin as a human KLRG1 ligand.
- Functional assays using K562 target cells expressing E-cadherin to assess NK cell inhibition.
- Analysis of KLRG1-E-cadherin interaction using cells with tumor-associated E-cadherin mutations.
Main Results:
- Human E-cadherin was identified as a ligand for human KLRG1.
- E-cadherin on target cells modestly inhibited polyclonal human NK cell function.
- Tumor-associated mutations in E-cadherin altered KLRG1 binding and enhanced NK cell triggering.
- E-cadherin binding sites for homophilic interaction are also involved in KLRG1 binding.
Conclusions:
- E-cadherin, a key epithelial adhesion molecule, regulates human NK cell function.
- The KLRG1-E-cadherin interaction is modulated by cancer-associated mutations, impacting NK cell responses.
- This interaction plays a role in NK cell regulation in both humans and mice.
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