A Dynamic rRNA Ribomethylome Drives Stemness in Acute Myeloid Leukemia

动态的rRNA核糖甲基化组驱动急性髓系白血病干性

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作者:Fengbiao Zhou #,Nesrine Aroua #,Yi Liu,Christian Rohde,Jingdong Cheng,Anna-Katharina Wirth,Daria Fijalkowska,Stefanie Göllner,Michelle Lotze,Haiyang Yun,Xiaobing Yu,Caroline Pabst,Tim Sauer,Thomas Oellerich,Hubert Serve,Christoph Röllig,Martin Bornhäuser,Christian Thiede,Claudia Baldus,Michaela Frye,Simon Raffel,Jeroen Krijgsveld,Irmela Jeremias,Roland Beckmann,Andreas Trumpp ,Carsten Müller-Tidow

Abstract

The development and regulation of malignant self-renewal remain unresolved issues. Here, we provide biochemical, genetic, and functional evidence that dynamics in ribosomal RNA (rRNA) 2'-O-methylation regulate leukemia stem cell (LSC) activity in vivo. A comprehensive analysis of the rRNA 2'-O-methylation landscape of 94 patients with acute myeloid leukemia (AML) revealed dynamic 2'-O-methylation specifically at exterior sites of ribosomes. The rRNA 2'-O-methylation pattern is closely associated with AML development stage and LSC gene expression signature. Forced expression of the 2'-O-methyltransferase fibrillarin (FBL) induced an AML stem cell phenotype and enabled engraftment of non-LSC leukemia cells in NSG mice. Enhanced 2'-O-methylation redirected the ribosome translation program toward amino acid transporter mRNAs enriched in optimal codons and subsequently increased intracellular amino acid levels. Methylation at the single site 18S-guanosine 1447 was instrumental for LSC activity. Collectively, our work demonstrates that dynamic 2'-O-methylation at specific sites on rRNAs shifts translational preferences and controls AML LSC self-renewal. Significance: We establish the complete rRNA 2'-O-methylation landscape in human AML. Plasticity of rRNA 2'-O-methylation shifts protein translation toward an LSC phenotype. This dynamic process constitutes a novel concept of how cancers reprogram cell fate and function. This article is highlighted in the In This Issue feature, p. 247.

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