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NAT10-mediated mRNA N4-acetylcytidine reprograms serine metabolism to drive leukaemogenesis and stemness in acute myeloid leukaemia

Authors :
Zhang, Subo
Huang, Feng
Wang, Yushuai
Long, Yifei
Li, Yuanpei
Kang, Yalin
Gao, Weiwei
Zhang, Xiuxin
Wen, Yueting
Wang, Yun
Pan, Lili
Xia, Youmei
Yang, Zhoutian
Yang, Ying
Mo, Hongjie
Li, Baiqing
Hu, Jiacheng
Song, Yunda
Zhang, Shilin
Dong, Shenghua
Du, Xiao
Li, Yingmin
Liu, Yadi
Liao, Wenting
Gao, Yijun
Zhang, Yaojun
Chen, Hongming
Liang, Yang
Chen, Jianjun
Weng, Hengyou
Huang, Huilin
Source :
Nature Cell Biology; December 2024, Vol. 26 Issue: 12 p2168-2182, 15p
Publication Year :
2024

Abstract

RNA modification has emerged as an important epigenetic mechanism that controls abnormal metabolism and growth in acute myeloid leukaemia (AML). However, the roles of RNA N4-acetylcytidine (ac4C) modification in AML remain elusive. Here, we report that ac4C and its catalytic enzyme NAT10 drive leukaemogenesis and sustain self-renewal of leukaemic stem cells/leukaemia-initiating cells through reprogramming serine metabolism. Mechanistically, NAT10 facilitates exogenous serine uptake and de novo biosynthesis through ac4C-mediated translation enhancement of the serine transporter SLC1A4 and the transcription regulators HOXA9 and MENIN that activate transcription of serine synthesis pathway genes. We further characterize fludarabine as an inhibitor of NAT10 and demonstrate that pharmacological inhibition of NAT10 targets serine metabolic vulnerability, triggering substantial anti-leukaemia effects both in vitro and in vivo. Collectively, our study demonstrates the functional importance of ac4C and NAT10 in metabolism control and leukaemogenesis, providing insights into the potential of targeting NAT10 for AML therapy.

Details

Language :
English
ISSN :
14657392 and 14764679
Volume :
26
Issue :
12
Database :
Supplemental Index
Journal :
Nature Cell Biology
Publication Type :
Periodical
Accession number :
ejs67924261
Full Text :
https://doi.org/10.1038/s41556-024-01548-y