Stomatin-Like Protein 2 Binds Cardiolipin and Regulates Mitochondrial Biogenesis and Function

Author:

Christie Darah A.1,Lemke Caitlin D.1,Elias Isaac M.1,Chau Luan A.1,Kirchhof Mark G.1,Li Bo1,Ball Eric H.2,Dunn Stanley D.2,Hatch Grant M.3,Madrenas Joaquín1

Affiliation:

1. The Centre for Human Immunology, Robarts Research Institute, Department of Microbiology and Immunology, and Department of Medicine

2. Department of Biochemistry, The University of Western Ontario, London, Ontario, Canada N6A 5K8

3. Departments of Pharmacology and Therapeutics and of Biochemistry and Medical Genetics, University of Manitoba, Winnipeg, Manitoba, Canada R3E 0T6

Abstract

ABSTRACT Stomatin-like protein 2 (SLP-2) is a widely expressed mitochondrial inner membrane protein of unknown function. Here we show that human SLP-2 interacts with prohibitin-1 and -2 and binds to the mitochondrial membrane phospholipid cardiolipin. Upregulation of SLP-2 expression increases cardiolipin content and the formation of metabolically active mitochondrial membranes and induces mitochondrial biogenesis. In human T lymphocytes, these events correlate with increased complex I and II activities, increased intracellular ATP stores, and increased resistance to apoptosis through the intrinsic pathway, ultimately enhancing cellular responses. We propose that the function of SLP-2 is to recruit prohibitins to cardiolipin to form cardiolipin-enriched microdomains in which electron transport complexes are optimally assembled. Likely through the prohibitin functional interactome, SLP-2 then regulates mitochondrial biogenesis and function.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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