Glucose‐mediated mitochondrial reprogramming by cholesterol export at TM4SF5‐enriched mitochondria‐lysosome contact sites

Author:

Kim Ji Eon12ORCID,Park So‐Young3,Kwak Chulhwan4,Lee Yoonji5ORCID,Song Dae‐Geun6ORCID,Jung Jae Woo1,Lee Haesong1ORCID,Shin Eun‐Ae1ORCID,Pinanga Yangie1ORCID,Pyo Kyung‐hee1ORCID,Lee Eun Hae1ORCID,Kim Wonsik1ORCID,Kim Soyeon1ORCID,Jun Chang‐Duck7ORCID,Yun Jeanho8ORCID,Choi Sun9ORCID,Rhee Hyun‐Woo4ORCID,Liu Kwang‐Hyeon3ORCID,Lee Jung Weon1210ORCID

Affiliation:

1. Department of Pharmacy College of Pharmacy, Seoul National University Seoul Republic of Korea

2. Research Institute of Pharmaceutical Sciences, College of Pharmacy, Seoul National University Seoul Republic of Korea

3. BK21 FOUR Community‐Based Intelligent Novel Drug Discovery Education Unit, College of Pharmacy and Research Institute of Pharmaceutical Sciences, Kyungpook National University Daegu Republic of Korea

4. Department of Chemistry Seoul National University Seoul Republic of Korea

5. College of Pharmacy, Chung‐Ang University Seoul Republic of Korea

6. Natural Product Informatics Research Center, Korea Institute of Science and Technology (KIST) Gangneung‐si Gangwon‐do Republic of Korea

7. School of Life Sciences, Gwangju Institute of Science and Technology (GIST) Gwangju Republic of Korea

8. Department of Biochemistry College of Medicine, Dong‐A University Busan Republic of Korea

9. Global AI Drug Discovery Center, College of Pharmacy and Graduate School of Pharmaceutical Sciences, Ewha Womans University Seoul Republic of Korea

10. Interdisciplinary Program in Genetic Engineering, Seoul National University Seoul Republic of Korea

Abstract

AbstractBackgroundTransmembrane 4 L six family member 5 (TM4SF5) translocates subcellularly and functions metabolically, although it is unclear how intracellular TM4SF5 translocation is linked to metabolic contexts. It is thus of interests to understand how the traffic dynamics of TM4SF5 to subcellular endosomal membranes are correlated to regulatory roles of metabolisms.MethodsHere, we explored the metabolic significance of TM4SF5 localization at mitochondria‐lysosome contact sites (MLCSs), using in vitro cells and in vivo animal systems, via approaches by immunofluorescence, proximity labelling based proteomics analysis, organelle reconstitution etc.ResultsUpon extracellular glucose repletion following depletion, TM4SF5 became enriched at MLCSs via an interaction between mitochondrial FK506‐binding protein 8 (FKBP8) and lysosomal TM4SF5. Proximity labeling showed molecular clustering of phospho‐dynamic‐related protein I (DRP1) and certain mitophagy receptors at TM4SF5‐enriched MLCSs, leading to mitochondrial fission and autophagy. TM4SF5 bound NPC intracellular cholesterol transporter 1 (NPC1) and free cholesterol, and mediated export of lysosomal cholesterol to mitochondria, leading to impaired oxidative phosphorylation but intact tricarboxylic acid (TCA) cycle and β‐oxidation. In mouse models, hepatocyte Tm4sf5 promoted mitophagy and cholesterol transport to mitochondria, both with positive relations to liver malignancy.ConclusionsOur findings suggested that TM4SF5‐enriched MLCSs regulate glucose catabolism by facilitating cholesterol export for mitochondrial reprogramming, presumably while hepatocellular carcinogenesis, recapitulating aspects for hepatocellular carcinoma metabolism with mitochondrial reprogramming to support biomolecule synthesis in addition to glycolytic energetics.

Funder

National Research Foundation of Korea

Publisher

Wiley

Subject

Cancer Research,Oncology

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