Lactylome Analysis Unveils Lactylation‐Dependent Mechanisms of Stemness Remodeling in the Liver Cancer Stem Cells

Author:

Feng Fan12,Wu Jiaqin34,Chi Qingjia5,Wang Shunshun12,Liu Wanqian4,Yang Li4,Song Guanbin4,Pan Lianhong6,Xu Kang127ORCID,Wang Chunli13ORCID

Affiliation:

1. Hubei Shizhen Laboratory Wuhan 430065 China

2. School of Pharmacy Hubei University of Chinese Medicine Wuhan 430065 China

3. School of Laboratory Medicine Hubei University of Chinese Medicine Wuhan 430065 China

4. National Innovation and Attracting Talents “111” base Key Laboratory of Biorheological Science and Technology Ministry of Education College of Bioengineering Chongqing University Chongqing 400000 China

5. Department of Engineering Structure and Mechanics School of Science Wuhan University of Technology Wuhan 430070 China

6. Chongqing Key Laboratory of Development and Utilization of Genuine Medicinal Materials in Three Gorges Reservoir Area Chongqing Engineering Research Center of Antitumor Natural Drugs Chongqing Three Gorges Medical College Chongqing 400030 China

7. Center of Traditional Chinese Medicine Modernization for Liver Diseases Hubei University of Chinese Medicine Wuhan 430065 China

Abstract

AbstractLactate plays a critical role as an energy substrate, metabolite, and signaling molecule in hepatocellular carcinoma (HCC). Intracellular lactate‐derived protein lysine lactylation (Kla) is identified as a contributor to the progression of HCC. Liver cancer stem cells (LCSCs) are believed to be the root cause of phenotypic and functional heterogeneity in HCC. However, the impact of Kla on the biological processes of LCSCs remains poorly understood. Here enhanced glycolytic metabolism, lactate accumulation, and elevated levels of lactylation are observed in LCSCs compared to HCC cells. H3K56la was found to be closely associated with tumourigenesis and stemness of LCSCs. Notably, a comprehensive examination of the lactylome and proteome of LCSCs and HCC cells identified the ALDOA K230/322 lactylation, which plays a critical role in promoting the stemness of LCSCs. Furthermore, this study demonstrated the tight binding between aldolase A (ALDOA) and dead box deconjugate enzyme 17 (DDX17), which is attenuated by ALDOA lactylation, ultimately enhancing the regulatory function of DDX17 in maintaining the stemness of LCSCs. This investigation highlights the significance of Kla in modulating the stemness of LCSCs and its impact on the progression of HCC. Targeting lactylation in LCSCs may offer a promising therapeutic approach for treating HCC.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Publisher

Wiley

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