Loss of sphingosine kinase 2 promotes the expansion of hematopoietic stem cells by improving their metabolic fitness

Author:

Li Changzheng12,Wu Binghuo12,Li Yishan12,Liu Yaxi3,Wang Jin2ORCID,Xie Jiayi2,Xu Xi1,Tian Xiaobin2,Ye Zhitao4,Guan Jingjing2ORCID,Chen Jie1,Xie Siyu1,Zhang Baolin2,Cai Boyong2,Wang Qianhao3,Yu Haopeng5,Lan Tian6,Man Cheuk Him7ORCID,Kang Xunlei8,Qian Pengxu9,Perry John M.10,He Aibin3ORCID,Jiang Linjia1,Zhao Meng12

Affiliation:

1. 1RNA Biomedical Institute, Sun Yat-sen Memorial Hospital, Zhongshan School of Medicine, Sun Yat-sen University, Guangzhou, China

2. 2Key Laboratory of Stem Cells and Tissue Engineering (Ministry of Education), Zhongshan School of Medicine, Sun Yat-sen University, Guangzhou, China

3. 3Beijing Key Laboratory of Cardiometabolic Molecular Medicine, Institute of Molecular Medicine, Peking-Tsinghua Center for Life Sciences, Peking University, Beijing, China

4. 4Department of Hematology, the Seventh Affiliated Hospital, Sun Yat-sen University, Shenzhen, China

5. 5West China Biomedical Big Data Center, West China Hospital/West China School of Medicine, Sichuan University, Chengdu, China

6. 6Guangdong Pharmaceutical University, Guangzhou, China

7. 7Division of Haematology, Department of Medicine, Li Ka Shing Faculty of Medicine, The University of Hong Kong, HKSAR, China

8. 8Center for Precision Medicine, Department of Medicine, University of Missouri, Kansas, MO

9. 9BM Transplantation Center of the First Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, China

10. 10Children's Mercy Hospital, University of Kansas Medical Center, Kansas, MO

Abstract

Abstract Hematopoietic stem cells (HSCs) have reduced capacities to properly maintain and replenish the hematopoietic system during myelosuppressive injury or aging. Expanding and rejuvenating HSCs for therapeutic purposes has been a long-sought goal with limited progress. Here, we show that the enzyme Sphk2 (sphingosine kinase 2), which generates the lipid metabolite sphingosine-1-phosphate, is highly expressed in HSCs. The deletion of Sphk2 markedly promotes self-renewal and increases the regenerative potential of HSCs. More importantly, Sphk2 deletion globally preserves the young HSC gene expression pattern, improves the function, and sustains the multilineage potential of HSCs during aging. Mechanistically, Sphk2 interacts with prolyl hydroxylase 2 and the Von Hippel-Lindau protein to facilitate HIF1α ubiquitination in the nucleus independent of the Sphk2 catalytic activity. Deletion of Sphk2 increases hypoxic responses by stabilizing the HIF1α protein to upregulate PDK3, a glycolysis checkpoint protein for HSC quiescence, which subsequently enhances the function of HSCs by improving their metabolic fitness; specifically, it enhances anaerobic glycolysis but suppresses mitochondrial oxidative phosphorylation and generation of reactive oxygen species. Overall, targeting Sphk2 to enhance the metabolic fitness of HSCs is a promising strategy to expand and rejuvenate functional HSCs.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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