Abstract
AbstractEwing’s sarcoma (ES) represents a rare yet exceedingly aggressive neoplasm that poses a significant health risk to the pediatric and adolescent population. The clinical outcomes for individuals with relapsed or refractory ES are notably adverse, primarily attributed to the constrained therapeutic alternatives available. Despite significant advancements in the field, molecular pathology-driven therapeutic strategies have yet to achieve a definitive reduction in the mortality rates associated with ES. Consequently, there exists an imperative need to discover innovative therapeutic targets to effectively combat ES. To reveal the mechanism of the SETD8 (also known as lysine methyltransferase 5A) inhibitor UNC0379, cell death manners were analyzed with different inhibitors. The contributions of SETD8 to the processes of apoptosis and ferroptosis in ES cells were evaluated employing the histone methyltransferase inhibitor UNC0379 in conjunction with RNA interference techniques. The molecular regulatory mechanisms of SETD8 in ES were examined through the application of RNA sequencing (RNA-seq) and mass spectrometry-based proteomic analysis. Moreover, nude mouse xenograft models were established to explore the role of SETD8 in ES in vivo. SETD8, a sole nucleosome-specific methyltransferase that catalyzes mono-methylation of histone H4 at lysine 20 (H4K20me1), was found to be upregulated in ES, and its overexpression was associated with dismal outcomes of patients. SETD8 knockdown dramatically induced the apoptosis and ferroptosis of ES cells in vitro and suppressed tumorigenesis in vivo. Mechanistic investigations revealed that SETD8 facilitated the nuclear translocation of YBX1 through post-transcriptional regulatory mechanisms, which subsequently culminated in the transcriptional upregulation of RAC3. In summary, SETD8 inhibits the apoptosis and ferroptosis of ES cells through the YBX1/RAC3 axis, which provides new insights into the mechanism of tumorigenesis of ES. SETD8 may be a potential target for clinical intervention in ES patients.
Funder
National Natural Science Foundation of China
Publisher
Springer Science and Business Media LLC
Reference38 articles.
1. Grunewald T, Cidre-Aranaz F, Surdez D, Tomazou ME, Álava de E, Kovar H, et al. Ewing sarcoma. Nat Rev Dis Prim. 2018;4:5.
2. Eaton BR, Claude L, Indelicato DJ, Vatner R, Yeh B, Schwarz R, et al. Ewing sarcoma. Pediatr Blood Cancer. 2021;68. Suppl 2:e28355.
3. Chen B, Chen H, Lu S, Zhu X, Que Y, Zhang Y, et al. KDM5B promotes tumorigenesis of Ewing sarcoma via FBXW7/CCNE1 axis. Cell Death Dis. 2022;13:354.
4. Gao Y, He XY, Wu XS, Huang YH, Toneyan S, Ha T. et al. Etv6 dependency in ewing sarcoma by antagonism of ews-fli1-mediated enhancer activation. Nat Cell Biol. 2023;25:298–308.
5. Dos SA, Fazeli G, Xavier DST, Friedmann AJP. Ferroptosis: mechanisms and implications for cancer development and therapy response. Trends Cell Biol. 2023;33:1062–76.