Mechanisms by Which Dietary Fatty Acids Regulate Mitochondrial Structure-Function in Health and Disease
Author(s) -
E. Madison Sullivan,
Edward Ross Pennington,
William D. Green,
Melinda A. Beck,
David A. Brown,
Saame Raza Shaikh
Publication year - 2018
Publication title -
advances in nutrition
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.362
H-Index - 90
eISSN - 2161-8313
pISSN - 2156-5376
DOI - 10.1093/advances/nmy007
Subject(s) - mitochondrion , compartmentalization (fire protection) , microbiology and biotechnology , biochemistry , biology , function (biology) , organelle , inner mitochondrial membrane , chemistry , enzyme
Mitochondria are the energy-producing organelles within a cell. Furthermore, mitochondria have a role in maintaining cellular homeostasis and proper calcium concentrations, building critical components of hormones and other signaling molecules, and controlling apoptosis. Structurally, mitochondria are unique because they have 2 membranes that allow for compartmentalization. The composition and molecular organization of these membranes are crucial to the maintenance and function of mitochondria. In this review, we first present a general overview of mitochondrial membrane biochemistry and biophysics followed by the role of different dietary saturated and unsaturated fatty acids in modulating mitochondrial membrane structure-function. We focus extensively on long-chain n-3 (ω-3) polyunsaturated fatty acids and their underlying mechanisms of action. Finally, we discuss implications of understanding molecular mechanisms by which dietary n-3 fatty acids target mitochondrial structure-function in metabolic diseases such as obesity, cardiac-ischemia reperfusion injury, obesity, type 2 diabetes, nonalcoholic fatty liver disease, and select cancers.
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