Author:
Xue Meilin,Dong Lei,Zhang Honghai,Li Yangchan,Qiu Kangqiang,Zhao Zhicong,Gao Min,Han Li,Chan Anthony K. N.,Li Wei,Leung Keith,Wang Kitty,Pokharel Sheela Pangeni,Qing Ying,Liu Wei,Wang Xueer,Ren Lili,Bi Hongjie,Yang Lu,Shen Chao,Chen Zhenhua,Melstrom Laleh,Li Hongzhi,Timchenko Nikolai,Deng Xiaolan,Huang Wendong,Rosen Steven T.,Tian Jingyan,Xu Lin,Diao Jiajie,Chen Chun-Wei,Chen Jianjun,Shen Baiyong,Chen Hao,Su Rui
Abstract
Abstract
Background
While liver cancer stem cells (CSCs) play a crucial role in hepatocellular carcinoma (HCC) initiation, progression, recurrence, and treatment resistance, the mechanism underlying liver CSC self-renewal remains elusive. We aim to characterize the role of Methyltransferase 16 (METTL16), a recently identified RNA N6-methyladenosine (m6A) methyltransferase, in HCC development/maintenance, CSC stemness, as well as normal hepatogenesis.
Methods
Liver-specific Mettl16 conditional KO (cKO) mice were generated to assess its role in HCC pathogenesis and normal hepatogenesis. Hydrodynamic tail-vein injection (HDTVi)-induced de novo hepatocarcinogenesis and xenograft models were utilized to determine the role of METTL16 in HCC initiation and progression. A limiting dilution assay was utilized to evaluate CSC frequency. Functionally essential targets were revealed via integrative analysis of multi-omics data, including RNA-seq, RNA immunoprecipitation (RIP)-seq, and ribosome profiling.
Results
METTL16 is highly expressed in liver CSCs and its depletion dramatically decreased CSC frequency in vitro and in vivo. Mettl16 KO significantly attenuated HCC initiation and progression, yet only slightly influenced normal hepatogenesis. Mechanistic studies, including high-throughput sequencing, unveiled METTL16 as a key regulator of ribosomal RNA (rRNA) maturation and mRNA translation and identified eukaryotic translation initiation factor 3 subunit a (eIF3a) transcript as a bona-fide target of METTL16 in HCC. In addition, the functionally essential regions of METTL16 were revealed by CRISPR gene tiling scan, which will pave the way for the development of potential inhibitor(s).
Conclusions
Our findings highlight the crucial oncogenic role of METTL16 in promoting HCC pathogenesis and enhancing liver CSC self-renewal through augmenting mRNA translation efficiency.
Funder
U.S. National Institutes of Health
American Association for the Study of Liver Diseases (AASLD) Foundation
Margaret E. Early Medical Research Trust
Leukemia Research Foundation
the Simms/Mann Family Foundation
Publisher
Springer Science and Business Media LLC