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Natural Killer Cell Activation by Ubiquitin-specific Protease 6 Mediates Tumor Suppression in Ewing Sarcoma
Kanika Jain1,2, Ian C Henrich1,2, Laura Quick1
1Department of Pathology and Laboratory Medicine, Children's Hospital of Philadelphia, Philadelphia, Pennsylvania.
Abstract:
Ewing sarcoma is a rare and deadly pediatric bone cancer for which survival rates and treatment options have stagnated for decades. Ewing sarcoma has not benefited from immunotherapy due to poor understanding of how its immune landscape is regulated. We recently reported that ubiquitin-specific protease 6 (USP6) functions as a tumor suppressor in Ewing sarcoma, and identified it as the first cell-intrinsic factor to modulate the Ewing sarcoma immune tumor microenvironment (TME). USP6 induces intratumoral infiltration and activation of multiple innate immune lineages in xenografted nude mice. Here we report that natural killer (NK) cells are essential for its tumor-inhibitory functions, as NK cell depletion reverses USP6-mediated suppression of Ewing sarcoma xenograft growth. USP6 expression in Ewing sarcoma cells directly stimulates NK cell activation and degranulation in vitro, and functions by increasing surface levels of multiple NK cell-activating ligands. USP6 also induces surface upregulation of the receptor for the apoptosis-inducing ligand tumor necrosis factor-related apoptosis-inducing ligand (TRAIL), providing an additional route for enhanced sensitivity to NK cell killing. Furthermore, USP6-expressing Ewing sarcoma and NK cells participate in a paracrine immunostimulatory feedforward loop, wherein IFNγ secreted by activated NK cells feeds back on USP6/Ewing sarcoma cells to induce synergistic expression of chemokines CXCL9 and CXCL10. Remarkably, expression of USP6 in subcutaneous Ewing sarcoma xenografts induces systemic activation and maturation of NK cells, and induces an abscopal response in which growth of distal tumors is inhibited, coincident with increased infiltration and activation of NK cells. This work reveals how USP6 reprograms the Ewing sarcoma TME to enhance antitumor immunity, and may be exploited for future therapeutic benefit.
Significance:
This study provides novel insights into the immunomodulatory functions of USP6, the only cancer cell-intrinsic factor demonstrated to regulate the immune TME in Ewing sarcoma. We demonstrate that USP6-mediated suppression of Ewing sarcoma tumorigenesis is dependent on NK cells. USP6 directly activates NK cell cytolytic function, inducing both intratumoral and systemic activation of NK cells in an Ewing sarcoma xenograft model.
Insights
Ubiquitin-specific protease 6 (USP6) acts as a tumor suppressor in Ewing sarcoma by activating natural killer (NK) cells. This immune activation inhibits tumor growth and may offer new therapeutic strategies for this pediatric cancer.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Ewing sarcoma, a rare pediatric bone cancer, has seen stagnant survival rates and limited treatment options for decades.
- The poor understanding of Ewing sarcoma's immune landscape has hindered the development of effective immunotherapies.
- Ubiquitin-specific protease 6 (USP6) was recently identified as a tumor suppressor modulating the Ewing sarcoma tumor microenvironment (TME).
Purpose of the Study:
- To investigate the role of USP6 in regulating the immune TME of Ewing sarcoma.
- To determine the specific immune cell types involved in USP6-mediated tumor suppression.
- To elucidate the mechanisms by which USP6 enhances anti-tumor immunity in Ewing sarcoma.
Main Methods:
- Utilized xenograft models of Ewing sarcoma in nude mice.
- Assessed the impact of USP6 expression on immune cell infiltration and activation within tumors.
- Conducted in vitro studies to evaluate USP6's direct effects on natural killer (NK) cell function.
- Measured NK cell-activating ligands and TRAIL receptor expression.
- Analyzed paracrine signaling loops involving NK cell-secreted IFNγ and Ewing sarcoma cells.
Main Results:
- USP6 expression suppresses Ewing sarcoma growth by inducing infiltration and activation of innate immune cells, particularly NK cells.
- NK cell depletion reversed the tumor-inhibitory effects of USP6, confirming their essential role.
- USP6 directly enhances NK cell activation, degranulation, and sensitivity to killing by upregulating NK cell-activating ligands and TRAIL receptor.
- A feedforward loop was identified where NK cell-derived IFNγ synergistically enhances chemokine expression in USP6-expressing Ewing sarcoma cells.
- Systemic NK cell activation and abscopal responses (inhibition of distal tumor growth) were observed in vivo.
Conclusions:
- USP6 functions as a critical immune regulator in Ewing sarcoma, primarily through the activation of NK cells.
- USP6 reprograms the Ewing sarcoma TME to enhance anti-tumor immunity via direct and indirect mechanisms.
- Targeting USP6 or leveraging its immune-activating properties holds potential for novel therapeutic strategies against Ewing sarcoma.
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