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题名

m6A modification-tuned sphingolipid metabolism regulates postnatal liver development in male mice

作者
通讯作者Xia,Yuchen; Li,Shiyang; Heikenwalder,Mathias; Yuan,Detian
发表日期
2023
DOI
发表期刊
EISSN
2522-5812
卷号5期号:5
摘要
Different organs undergo distinct transcriptional, epigenetic and physiological alterations that guarantee their functional maturation after birth. However, the roles of epitranscriptomic machineries in these processes have remained elusive. Here we demonstrate that expression of RNA methyltransferase enzymes Mettl3 and Mettl14 gradually declines during postnatal liver development in male mice. Liver-specific Mettl3 deficiency causes hepatocyte hypertrophy, liver injury and growth retardation. Transcriptomic and N6-methyl-adenosine (mA) profiling identify the neutral sphingomyelinase, Smpd3, as a target of Mettl3. Decreased decay of Smpd3 transcripts due to Mettl3 deficiency results in sphingolipid metabolism rewiring, characterized by toxic ceramide accumulation and leading to mitochondrial damage and elevated endoplasmic reticulum stress. Pharmacological Smpd3 inhibition, Smpd3 knockdown or Sgms1 overexpression that counteracts Smpd3 can ameliorate the abnormality of Mettl3-deficent liver. Our findings demonstrate that Mettl3–N-methyl-adenosine fine-tunes sphingolipid metabolism, highlighting the pivotal role of an epitranscriptomic machinery in coordination of organ growth and the timing of functional maturation during postnatal liver development.
相关链接[Scopus记录]
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语种
英语
学校署名
其他
资助项目
National Key Research and Development Program of China[2020YFA0804400] ; National Natural Science Foundation of China["82270621","81802799","82071854","81971936","32100590","32270820","32000857"] ; Shandong Provincial Natural Science Foundation, China["ZR2019BH002","ZR2020QH038","ZR2020MH269","ZR2021QB012","ZR2022MH150"] ; Jiangsu Provincial Natural Science Foundation, China[BK20180222] ; Funds for Youth Interdisciplinary and Innovation Research Groups of Shandong University["2020QNQT003","2020QNQT009"] ; Fundamental Research Funds for the Central Universities["2022JC008","2042021gf0013"]
WOS研究方向
Endocrinology & Metabolism
WOS类目
Endocrinology & Metabolism
WOS记录号
WOS:000992787300002
出版者
Scopus记录号
2-s2.0-85159258835
来源库
Scopus
引用统计
被引频次[WOS]:14
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/536777
专题南方科技大学第一附属医院
作者单位
1.Department of Biochemistry and Molecular Biology,School of Basic Medical Sciences,Cheeloo College of Medicine,Shandong University,Jinan,China
2.Department of Pulmonary and Critical Care Medicine,Shenzhen Institute of Respiratory Diseases,Shenzhen People’s Hospital (The Second Clinical Medical College,Jinan University; The First Affiliated Hospital,Southern University of Science and Technology),Shenzhen,China
3.State Key Laboratory of Virology and Hubei Province Key Laboratory of Allergy and Immunology,Hubei Jiangxia Laboratory,Institute of Medical Virology,TaiKang Center for Life and Medical Sciences,TaiKang Medical School,Wuhan University,Wuhan,China
4.Institute of Pathology and Pathophysiology,School of Basic Medical Sciences,Cheeloo College of Medicine,Shandong University,Jinan,China
5.Department of Gastroenterology,Qilu Hospital,Shandong University,Jinan,China
6.Shandong Provincial Clinical Research Center for Digestive Disease,Jinan,China
7.Pediatric Research Institute,Children’s Hospital Affiliated to Shandong University,Jinan,China
8.Advanced Medical Research Institute,Shandong University,Jinan,China
9.Division of Chronic Inflammation and Cancer,German Cancer Research Center,Heidelberg,Germany
10.The M3 Research Institute,Eberhard Karls University Tübingen,Tübingen,Germany
推荐引用方式
GB/T 7714
Wang,Shiguan,Chen,Shanze,Sun,Jianfeng,et al. m6A modification-tuned sphingolipid metabolism regulates postnatal liver development in male mice[J]. Nature Metabolism,2023,5(5).
APA
Wang,Shiguan.,Chen,Shanze.,Sun,Jianfeng.,Han,Pan.,Xu,Bowen.,...&Yuan,Detian.(2023).m6A modification-tuned sphingolipid metabolism regulates postnatal liver development in male mice.Nature Metabolism,5(5).
MLA
Wang,Shiguan,et al."m6A modification-tuned sphingolipid metabolism regulates postnatal liver development in male mice".Nature Metabolism 5.5(2023).
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