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Updated: Mar 16, 2026

Retroviral CRISPR/Cas9-Mediated Gene Targeting for the Study of Th17 Differentiation in Vitro
Published on: November 15, 2024
Retinoid-related orphan receptor γ (RORγ) adult induced knockout mice develop lymphoblastic lymphoma
Maria Liljevald1, Maria Rehnberg2, Magnus Söderberg1
1Drug Safety and Metabolism, Innovative Medicines and Early Development Biotech Unit, AstraZeneca, , Pepparedsleden 1, Mölndal 431 83, SE, Sweden.
Abstract:
RORγ is a nuclear hormone receptor which controls polarization of naive CD4+ T-cells into proinflammatory Th17 cells. Pharmacological antagonism of RORγ has therapeutic potential for autoimmune diseases; however, this mechanism may potentially carry target-related safety risks, as mice deficient in Rorc, the gene encoding RORγ, develop T-cell lymphoma with 50% frequency. Due to the requirement of RORγ during development, the Rorc knockout (KO) animals lack secondary lymphoid organs and have a dysregulation in the generation of CD4+ and CD8+ T cells. We wanted to extend the evaluation of RORγ deficiency to address the question whether lymphomas, similar to those observed in the Rorc KO, would develop in an animal with an otherwise intact adult immune system. Accordingly, we designed a conditional RORγ knockout mouse (Rorc CKO) where the Rorc locus could be deleted in adult animals. Based on these studies we can confirm that these animals also develop lymphoma in a similar time frame as embryonic Rorc knockouts. This study also suggests that in animals where the gene deletion is incomplete, the thymus undergoes a rapid selection process replacing Rorc deficient cells with remnant thymocytes carrying a functional Rorc locus and that subsequently, these animals do not develop lymphoblastic lymphoma.
Insights
Targeting RORγ (Retinoid-related Orphan Receptor gamma) for autoimmune diseases carries risks. Complete RORγ deficiency in adult mice leads to T-cell lymphoma, similar to embryonic knockouts.
Area of Science:
- Immunology
- Molecular Biology
- Oncology
Background:
- RORγ (Retinoid-related Orphan Receptor gamma) is crucial for naive CD4+ T-cell polarization into Th17 cells.
- Pharmacological RORγ antagonism is a potential therapy for autoimmune diseases.
- RORγ deficiency in mice (Rorc KO) is linked to a high frequency of T-cell lymphoma and developmental defects.
Purpose of the Study:
- To investigate if RORγ deficiency in adult mice with an intact immune system leads to lymphoma.
- To evaluate the safety risks associated with RORγ antagonism in autoimmune disease therapy.
Main Methods:
- Development of a conditional RORγ knockout mouse (Rorc CKO) model.
- Deletion of the Rorc locus in adult Rorc CKO animals.
- Analysis of lymphoma development and thymic selection processes.
Main Results:
- Rorc CKO mice developed lymphoma within a similar timeframe as embryonic Rorc knockouts.
- Incomplete RORγ deletion resulted in thymic selection, favoring Rorc-sufficient cells.
- Animals with incomplete deletion did not develop lymphoblastic lymphoma.
Conclusions:
- Complete RORγ deficiency in adult mice can induce T-cell lymphoma, highlighting potential safety concerns for RORγ-targeted therapies.
- Thymic selection can mitigate lymphoma development in cases of incomplete RORγ deficiency.

