翻译(生物学)
核糖体生物发生
核糖体
纤维蛋白
核糖核蛋白
核仁
生物
基因敲除
核糖体RNA
细胞生物学
小核仁RNA
核糖体蛋白
核糖核酸
化学
基因沉默
分子生物学
蛋白质生物合成
真核核糖体
翻译效率
RNA结合蛋白
信使核糖核酸
内部核糖体进入位点
癌症
真核翻译
癌症研究
23S核糖体RNA
癌细胞
作者
Paula Groza,Kanchan Kumari,Margalida Esteva Socias,Johanna Schott,Devi Prasad Bhattarai,Joanna J. Sajkowska,Rubin Dasgupta,Carlos Peula,Eliana Destefanis,Chloe Williams,Virginie Marchand,Pernilla Wikström,Rebecca Wiberg,Ana Bosch Campos,Jonathan D. Gilthorpe,Bogdan Pop,André Mateus,Yuri Motorin,Erik Dassi,Katja Petzold
标识
DOI:10.1016/j.canlet.2025.218124
摘要
Fibrillarin (FBL), a core component of the C/D box small nucleolar ribonucleoprotein (snoRNP) complex, catalyzes the 2'-O-methylation (Nm) of the ribose 2'-hydroxyl moiety in ribosomal RNA (rRNA). Distinct Nm patterns contribute to ribosome heterogeneity, which is linked to selective translation of oncogenes. FBL dysregulation generates an aberrant Nm signature in triple-negative breast cancer (TNBC), the most aggressive breast cancer subtype. This study investigated the role of FBL in TNBC via translation-driven mechanisms. Our findings show that FBL knockdown impairs oncogenic traits, triggers metabolic stress, and reduces the translation efficiency of oncogenes, such as metastasis-associated protein 1 (MTA1), interleukin-1 receptor-associated kinase 1 (IRAK1), and thymosin beta 10 (TMSB10). RiboMethSeq confirmed that the rRNA Nm sites exhibited differential sensitivity to FBL depletion. Additionally, FBL knockdown led to alterations in 18S ribosome structure confirmed by SHAPE and specifically reduced RPS28 incorporation into ribosomes. Notably, silencing RPS28 also disrupted both the oncogenic phenotype and downregulated MTA1, IRAK1, and TMSB10 expression. These findings reveal a complex interplay between FBL, rRNA Nm modifications, and RPS28 in shaping oncogenic protein pools and ribosomal composition in TNBC, offering promising insights into therapeutic approaches targeting this aggressive cancer subtype.
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