Mitochondrial RNA methyltransferase TRMT61B is a new, potential biomarker and therapeutic target for highly aneuploid cancers

非整倍体 生物 端粒酶 癌症研究 染色体不稳定性 癌症 癌细胞 基因组不稳定性 生物标志物 核糖核酸 DNA损伤 细胞生物学 遗传学 DNA 基因 染色体
作者
A. Martin,Carolina Epifano,Borja Vilaplana-Martí,Hernandez I,Rocio I.R. Macias,Ángel Martínez-Ramírez,Ana B. Cerezo,Pablo Cabezas-Sainz,María Garranzo-Asensio,Sandra Amarilla-Quintana,Déborah Gómez-Domínguez,Eduardo Caleiras,Jordi Camps,Gonzalo Gómez-López,Marta Gómez de Cedrón,Ana Ramírez de Molina,Rodrigo Barderas,Laura Sánchez,Susana Velasco-Miguel,Ignacio Pérez de Castro
出处
期刊:Cell Death & Differentiation [Springer Nature]
卷期号:30 (1): 37-53 被引量:2
标识
DOI:10.1038/s41418-022-01044-6
摘要

Despite being frequently observed in cancer cells, chromosomal instability (CIN) and its immediate consequence, aneuploidy, trigger adverse effects on cellular homeostasis that need to be overcome by anti-stress mechanisms. As such, these safeguard responses represent a tumor-specific Achilles heel, since CIN and aneuploidy are rarely observed in normal cells. Recent data have revealed that epitranscriptomic marks catalyzed by RNA-modifying enzymes change under various stress insults. However, whether aneuploidy is associated with such RNA modifying pathways remains to be determined. Through an in silico search for aneuploidy biomarkers in cancer cells, we found TRMT61B, a mitochondrial RNA methyltransferase enzyme, to be associated with high levels of aneuploidy. Accordingly, TRMT61B protein levels are increased in tumor cell lines with an imbalanced karyotype as well as in different tumor types when compared to control tissues. Interestingly, while TRMT61B depletion induces senescence in melanoma cell lines with low levels of aneuploidy, it leads to apoptosis in cells with high levels. The therapeutic potential of these results was further validated by targeting TRMT61B in transwell and xenografts assays. We show that TRM61B depletion reduces the expression of several mitochondrial encoded proteins and limits mitochondrial function. Taken together, these results identify a new biomarker of aneuploidy in cancer cells that could potentially be used to selectively target highly aneuploid tumors.
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