Biosynthesis and roles of phospholipids in mitochondrial fusion, division and mitophagy

Q Zhang, Y Tamura, M Roy, Y Adachi, M Iijima… - Cellular and molecular …, 2014 - Springer
Cellular and molecular life sciences, 2014Springer
Mitochondria move, fuse and divide in cells. The dynamic behavior of mitochondria is central
to the control of their structure and function. Three conserved mitochondrial dynamin-related
GTPases (ie, mitofusin, Opa1 and Drp1 in mammals and Fzo1, Mgm1 and Dnm1 in yeast)
mediate mitochondrial fusion and division. In addition to dynamins, recent studies
demonstrated that phospholipids in mitochondria also play key roles in mitochondrial
dynamics by interacting with dynamin GTPases and by directly changing the biophysical …
Abstract
Mitochondria move, fuse and divide in cells. The dynamic behavior of mitochondria is central to the control of their structure and function. Three conserved mitochondrial dynamin-related GTPases (i.e., mitofusin, Opa1 and Drp1 in mammals and Fzo1, Mgm1 and Dnm1 in yeast) mediate mitochondrial fusion and division. In addition to dynamins, recent studies demonstrated that phospholipids in mitochondria also play key roles in mitochondrial dynamics by interacting with dynamin GTPases and by directly changing the biophysical properties of the mitochondrial membranes. Changes in phospholipid composition also promote mitophagy, which is a selective mitochondrial degradation process that is mechanistically coupled to mitochondrial division. In this review, we will discuss the biogenesis and function of mitochondrial phospholipids.
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