ArticleAdvanced science (Weinheim, Baden-Wurttemberg, Germany)2026
FBP1-Mediated Compartmentalization of Glycolytic Enzyme Complexes Suppresses PKM2 Function to Ameliorate MASLD Progression.
Busong Wang, Yiping Tang, Na Li, Xuening Dai, Jing Wu, Bin Xue, Yuxin Chen, Jingzi Zhang, Lingdong Kong, Chaojun Li and 1 more
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In one paragraphArticle in Advanced science (Weinheim, Baden-Wurttemberg, Germany), 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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5 · Who and what moneyAuthors and funding
11 authors.
Busong Wang *State Key Laboratory of Pharmaceutical Biotechnology, Institute of Chinese Medicine, Department of Laboratory Medicine, Nanjing Drum Tower Hospital, Affiliated Hospital of Medical School, Medical School of Nanjing University, Nanjing, People's Republic of China.
Yiping Tang *State Key Laboratory of Pharmaceutical Biotechnology, Institute of Chinese Medicine, Department of Laboratory Medicine, Nanjing Drum Tower Hospital, Affiliated Hospital of Medical School, Medical School of Nanjing University, Nanjing, People's Republic of China.ORCID https://orcid.org/0009-0008-7899-9711 Na LiState Key Laboratory of Pharmaceutical Biotechnology, Institute of Chinese Medicine, Department of Laboratory Medicine, Nanjing Drum Tower Hospital, Affiliated Hospital of Medical School, Medical School of Nanjing University, Nanjing, People's Republic of China.
Xuening DaiState Key Laboratory of Reproductive Medicine and Offspring Health, Nanjing Medical University, Nanjing, People's Republic of China.
Jing WuState Key Laboratory of Reproductive Medicine and Offspring Health, Nanjing Medical University, Nanjing, People's Republic of China.
Bin XueState Key Laboratory of Reproductive Medicine and Offspring Health, Nanjing Medical University, Nanjing, People's Republic of China.
Yuxin ChenState Key Laboratory of Pharmaceutical Biotechnology, Institute of Chinese Medicine, Department of Laboratory Medicine, Nanjing Drum Tower Hospital, Affiliated Hospital of Medical School, Medical School of Nanjing University, Nanjing, People's Republic of China.ORCID https://orcid.org/0000-0001-5955-687X Jingzi ZhangState Key Laboratory of Pharmaceutical Biotechnology, Institute of Chinese Medicine, Department of Laboratory Medicine, Nanjing Drum Tower Hospital, Affiliated Hospital of Medical School, Medical School of Nanjing University, Nanjing, People's Republic of China.
Lingdong KongState Key Laboratory of Pharmaceutical Biotechnology, Institute of Chinese Medicine, Department of Laboratory Medicine, Nanjing Drum Tower Hospital, Affiliated Hospital of Medical School, Medical School of Nanjing University, Nanjing, People's Republic of China.ORCID https://orcid.org/0000-0002-2410-2250 Lei FangState Key Laboratory of Pharmaceutical Biotechnology, Institute of Chinese Medicine, Department of Laboratory Medicine, Nanjing Drum Tower Hospital, Affiliated Hospital of Medical School, Medical School of Nanjing University, Nanjing, People's Republic of China.ORCID https://orcid.org/0000-0002-2582-4845 Funding
Major Science and Technology Special Project of Jiangsu Province BG2025036National Natural Science Foundation of China 32071256National Natural Science Foundation of China 32371336Natural Science Foundation of Jiangsu Province BK20221443Youth Fund of the National Natural Science Foundation of China 32201066
6 · The paper itselfAbstract
Metabolic dysfunction-associated steatotic liver disease (MASLD) is driven by aberrant hepatocyte glycolytic reprogramming. Fructose-1,6-bisphosphatase 1 (FBP1), a key gluconeogenic enzyme, has poorly defined roles in MASLD progression. Here, we show that FBP1 is consistently downregulated during MASLD progression, with a progressive decline from MASL to MASH in clinical specimens and key preclinical models. Mechanistically, FBP1 directly interacts with glycolytic enzymes Pyruvate kinase M2 (PKM2), Enolase 1 (ENO1), and Lactate Dehydrogenase A (LDHA) to form compartmentalized complexes, suppressing PKM2 activity and restricting excessive glycolysis and lipid accumulation in hepatocytes. Domain mapping defined the precise interaction interface between FBP1 189-235 aa and PKM2 390-531 aa, and disruption of this binding abrogated FBP1's glycolysis-repressive effects in hepatocytes. In vivo, only liver-specific overexpression of enzymatically inactive but binding-competent FBP1 G260R, not its interaction-deficient mutant FBP1 G260R-Δ189-235, alleviated hepatic steatosis, inflammation, and fibrosis in diet-induced MASLD mice. This study reveals a non-canonical function of FBP1 independent of its enzymatic activity in regulating glycolytic complex assembly and identifies the FBP1-PKM2 interaction as a novel candidate intervention target for MASLD.
Indexed as
fructose‐1,6‐bisphosphatase 1 (fbp1)glycolytic enzyme compartmentalizationmetabolic dysfunction‐associated steatohepatitis (mash)metabolic dysfunction‐associated steatotic liver disease (masld)pyruvate kinase m2 (pkm2)
Identifiers
PMID42801683
PMCPMC13616314
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