Cardiolipin deficiency disrupts electron transport chain to drive steatohepatitis

Author:

Brothwell Marisa J12,Cao Guoshen13,Maschek J Alan124,Poss Annelise M12,Peterlin Alek D12,Wang Liping12,Baker Talia B56,Shahtout Justin L17,Siripoksup Piyarat17,Pearce Quentinn J4,Johnson Jordan M12,Finger Fabian M89,Prola Alexandre10,Pellizzari Sarah A311,Hale Gillian L511,Manuel Allison M4,Watanabe Shinya12,Miranda Edwin R1212,Affolter Kajsa E510,Tippetts Trevor S12,Nikolova Linda S13,Choi Ran Hee1212,Decker Stephen T1212,Patil Mallikarjun1212,Catrow J Leon4,Holland William L12312,Nowinski Sara M14,Lark Daniel S1516ORCID,Fisher-Wellman Kelsey H17,Mimche Patrice N18,Evason Kimberley J511,Cox James E134,Summers Scott A123512,Gerhart-Hines Zach89,Funai Katsuhiko12357

Affiliation:

1. Diabetes & Metabolism Research Center, University of Utah

2. Department of Nutrition and Integrative Physiology; University of Utah

3. Department of Biochemistry, University of Utah

4. Metabolomics Core Research Facility, University of Utah

5. Huntsman Cancer Institute, University of Utah

6. Division of Transplantation and Advanced Hepatobiliary Surgery, Department of Surgery, University of Utah

7. Department of Physical Therapy and Athletic Training, University of Utah

8. Novo Nordisk Foundation Center for Basic Metabolic Research, University of Copenhagen

9. Center for Adipocyte Signaling (ADIPOSIGN), University of Southern Denmark

10. Laboratory of Fundamental and Applied Bioenergetics, University of Grenoble Alpes, Inserm U1055

11. Department of Pathology, University of Utah

12. Molecular Medicine Program; University of Utah

13. Electron Microscopy Core Facility, University of Utah

14. Department of Metabolism and Nutritional Programming, Van Andel Institute

15. College of Health and Human Sciences, Colorado State University

16. Columbine Health Systems Center for Healthy Aging, Colorado State University

17. Department of Cancer Biology, Wake Forest University School of Medicine, Atrium Health Wake Forest Baptist Comprehensive Cancer Center

18. Departments of Dermatology and Medicine, Division of Gastroenterology and Hepatology, Indiana University School of Medicine

Abstract

Abstract Metabolic dysfunction-associated steatotic liver disease (MASLD) is a progressive disorder marked by lipid accumulation, leading to metabolic dysfunction-associated steatohepatitis (MASH). A key feature of the transition to MASH involves oxidative stress resulting from defects in mitochondrial oxidative phosphorylation (OXPHOS). Here, we show that pathological alterations in the lipid composition of the inner mitochondrial membrane (IMM) directly instigate electron transfer inefficiency to promote oxidative stress. Specifically, mitochondrial cardiolipin (CL) was downregulated with MASLD/MASH in humans and in mice. Hepatocyte-specific CL synthase knockout (CLS-LKO) led to spontaneous and robust MASH with extensive steatotic and fibrotic phenotype. Loss of CL paradoxically increased mitochondrial respiratory capacity but also reduced the formation of I+III2+IV respiratory supercomplex, promoted electron leak primarily at sites IIIQO and IIF of the electron transport chain, and disrupted the propensity of coenzyme Q (CoQ) to become reduced. Thus, low mitochondrial CL disrupts electron transport chain to promote oxidative stress and contributes to pathogenesis of MASH.

Publisher

eLife Sciences Publications, Ltd

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