Tronik-Le Roux Diana, Daouya Marina, Poras Isabelle, Desgrandchamps François, Carosella Edgardo D
CEA Commissariat À L'Énergie Atomique Et Aux Énergies Alternatives/Atomic Energy and Alternative Energies Agency, HIRD Hematology and Immunology Research Division, Saint-Louis Hospital, 1 Avenue Claude Vellefaux, 75010, Paris, France.
UMRS Unité Mixte de Recherche Et de Service 976HIPI, Human Immunology Pathophysiology Immunotherapie Unit, IRSL Institut de Recherche Saint Louis, University of Paris, Saint-Louis Hospital, 1 Avenue Claude Vellefaux, 75010, Paris, France.
Cancer Immunol Immunother. 2024 Oct 3;73(12):247. doi: 10.1007/s00262-024-03768-5.
The development of immunotherapies has proved to be clinically encouraging to re-establish the immune function modified by the expression of immune inhibitory molecules in tumors. However, there are still patients with poor survival rates following treatment. The elucidation of molecular mechanisms triggered by the neo-expression of particular IC in tumors would constitute a major step toward better understanding tumor evolution and would help to design future clinical protocols. To this end, we investigate the modifications triggered by the neo-expression of the immune checkpoints HLA-G in ccRCC tumor cells. We demonstrate, for the first time, that HLA-G modifies key genes implicated mainly in tumor development, angiogenesis, calcium flow and mitochondria dynamics. The involvement of HLA-G on the expression of genes belonging to these pathways such as ADAM-12, NCAM1 and NRP1 was confirmed by the CRISPR/Cas9-mediated edition of HLA-G. The data reveal multifaceted roles of HLA-G in tumor cells which are far beyond the well-known function of HLA-G in the immune anti-tumor response. This warrants further investigation of HLA-G and these new partners in tumors of different origin so as to propose future new treatments to improve health patient's outcome.
免疫疗法的发展已被证明在临床上令人鼓舞,它能够重新建立因肿瘤中免疫抑制分子表达而改变的免疫功能。然而,仍有部分患者在治疗后生存率较低。阐明肿瘤中特定免疫检查点新表达所触发的分子机制,将是朝着更好地理解肿瘤演变迈出的重要一步,并有助于设计未来的临床方案。为此,我们研究了免疫检查点HLA - G在ccRCC肿瘤细胞中的新表达所引发的变化。我们首次证明,HLA - G修饰了主要涉及肿瘤发展、血管生成、钙流和线粒体动力学的关键基因。通过CRISPR/Cas9介导的HLA - G编辑,证实了HLA - G对这些途径(如ADAM - 12、NCAM1和NRP1)中相关基因表达的影响。数据揭示了HLA - G在肿瘤细胞中的多方面作用,这远远超出了HLA - G在免疫抗肿瘤反应中的已知功能。这就需要进一步研究HLA - G以及这些在不同起源肿瘤中的新伙伴,以便提出未来新的治疗方法来改善患者的健康状况。