Saturated fatty acids increase LPI to reduce FUNDC1 dimerization and stability and mitochondrial function

Author:

Chen Linbo1ORCID,Zhang Qianping1,Meng Yuanyuan1,Zhao Tian1,Mu Chenglong1ORCID,Fu Changying1ORCID,Deng Caijuan2,Feng Jianyu1,Du Siling1,Liu Wei1,Geng Guangfeng1,Ma Kaili1,Cheng Hongcheng1,Liu Qiangqiang1ORCID,Luo Qian1,Zhang Jiaojiao1,Du Zhanqiang1,Cao Lin1,Wang Hui3,Liu Yong3,Lin Jianping2ORCID,Chen Guo1,Liu Lei4ORCID,Lam Sin Man56,Shui Guanghou5ORCID,Zhu Yushan1ORCID,Chen Quan1

Affiliation:

1. State Key Laboratory of Medicinal Chemical Biology, Frontiers Science Center for Cell Responses, Tianjin Key Laboratory of Protein Science, College of Life Sciences Nankai University Tianjin China

2. College of Pharmacy, Frontiers Science Center for Cell Responses Nankai University Tianjin China

3. Cancer Institute Xuzhou Medical University Xuzhou China

4. State Key Laboratory of Membrane Biology, Institute of Zoology Chinese Academy of Sciences Beijing China

5. State Key Laboratory of Molecular Developmental Biology, Institute of Genetics and Developmental Biology Chinese Academy of Sciences Beijing China

6. LipidAll Technologies Company Limited Changzhou China

Abstract

AbstractEctopic lipid deposition and mitochondrial dysfunction are common etiologies of obesity and metabolic disorders. Excessive dietary uptake of saturated fatty acids (SFAs) causes mitochondrial dysfunction and metabolic disorders, while unsaturated fatty acids (UFAs) counterbalance these detrimental effects. It remains elusive how SFAs and UFAs differentially signal toward mitochondria for mitochondrial performance. We report here that saturated dietary fatty acids such as palmitic acid (PA), but not unsaturated oleic acid (OA), increase lysophosphatidylinositol (LPI) production to impact on the stability of the mitophagy receptor FUNDC1 and on mitochondrial quality. Mechanistically, PA shifts FUNDC1 from dimer to monomer via enhanced production of LPI. Monomeric FUNDC1 shows increased acetylation at K104 due to dissociation of HDAC3 and increased interaction with Tip60. Acetylated FUNDC1 can be further ubiquitinated by MARCH5 for proteasomal degradation. Conversely, OA antagonizes PA‐induced accumulation of LPI, and FUNDC1 monomerization and degradation. A fructose‐, palmitate‐, and cholesterol‐enriched (FPC) diet also affects FUNDC1 dimerization and promotes its degradation in a non‐alcoholic steatohepatitis (NASH) mouse model. We thus uncover a signaling pathway that orchestrates lipid metabolism with mitochondrial quality.

Funder

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Molecular Biology,Biochemistry

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