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Production of Nurr-1 Specific Polyclonal Antibodies Free of Cross-reactivity Against Its Close Homologs, Nor1 and Nur77
Published on: August 17, 2015
'Nur'turing tumor T cell tolerance and exhaustion: novel function for Nuclear Receptor Nur77 in immunity
Sanne C Lith1, Bram W van Os1, Tom T P Seijkens2,3
1Department of Medical Biochemistry, Amsterdam UMC, Amsterdam Cardiovascular Sciences, Institute for Infection and Immunity, Amsterdam, The Netherlands.
Abstract:
The nuclear receptor Nur77 is expressed in a multitude of tissues, regulating cell differentiation and homeostasis. Dysregulation of Nur77 signaling is associated with cancer, cardiovascular disease, and disorders of the CNS. The role of Nur77 in T cells has been studied for almost 30 years now. There is a clear appreciation that Nur77 is crucial for apoptosis of self-reactive T cells. However, the regulation and function of Nur77 in mature T cells remains largely unclear. In an exciting development, Nur77 has been recently demonstrated to impinge on cancer immunotherapy involving chimeric antigen receptor (CAR) T cells and tumor infiltrating lymphocytes (TILs). These studies indicated that Nur77 deficiency reduced T cell tolerance and exhaustion, thus raising the effectiveness of immune therapy in mice. Based on these novel insights, it may be proposed that regulation of Nur77 activity holds promise for innovative drug development in the field of cellular immunotherapy in cancer. In this review, we therefore summarize the role of Nur77 in T cell selection and maturation; and further develop the idea of targeting its activity in these cells as a potential strategy to augment current cancer immunotherapy treatments.
Insights
The nuclear receptor Nur77 plays a key role in T cell function. Targeting Nur77 may enhance cancer immunotherapy by reducing T cell exhaustion and improving treatment effectiveness.
Area of Science:
- Immunology
- Molecular Biology
- Oncology
Background:
- Nuclear receptor Nur77 regulates cell differentiation and homeostasis.
- Nur77 signaling dysregulation is linked to cancer, cardiovascular disease, and CNS disorders.
- Nur77 is critical for T cell apoptosis, but its role in mature T cells is unclear.
Purpose of the Study:
- To review the role of Nur77 in T cell selection and maturation.
- To explore targeting Nur77 activity for enhanced cancer immunotherapy.
Main Methods:
- Literature review of Nur77 function in T cells.
- Analysis of recent findings on Nur77 in CAR T cells and TILs.
- Discussion of Nur77's potential in drug development for cellular immunotherapy.
Main Results:
- Nur77 deficiency reduces T cell tolerance and exhaustion in mice.
- This reduction enhances the effectiveness of cancer immunotherapies.
- Nur77 impacts T cell selection and maturation.
Conclusions:
- Nur77's role in mature T cells is crucial for immune response.
- Targeting Nur77 activity presents a promising strategy for cancer immunotherapy.
- Modulating Nur77 could lead to novel drug development for cellular immunotherapy.
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