4.8 Article

The Atypical Cadherin Fat Directly Regulates Mitochondrial Function and Metabolic State

Journal

CELL
Volume 158, Issue 6, Pages 1293-1308

Publisher

CELL PRESS
DOI: 10.1016/j.cell.2014.07.036

Keywords

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Funding

  1. Swiss National Science Foundation [PBBEP3_146277]
  2. CIHR [MOP-130437, MOP-79408, MOP-102656, MOP-97933]
  3. Swiss National Science Foundation (SNF) [PBBEP3_146277] Funding Source: Swiss National Science Foundation (SNF)

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Fat (Ft) cadherins are enormous cell adhesion molecules that function at the cell surface to regulate the tumor-suppressive Hippo signaling pathway and planar cell polarity (PCP) tissue organization. Mutations in Ft cadherins are found in a variety of tumors, and it is presumed that this is due to defects in either Hippo signaling or PCP. Here, we show Drosophila Ft functions in mitochondria to directly regulate mitochondrial electron transport chain integrity and promote oxidative phosphorylation. Proteolytic cleavage releases a soluble 68 kDa fragment (Ft(mito)) that is imported into mitochondria. Ft(mito) binds directly to NADH dehydrogenase ubiquinone flavoprotein 2 (Ndufv2), a core component of complex I, stabilizing the holoenzyme. Loss of Ft leads to loss of complex I activity, increases in reactive oxygen species, and a switch to aerobic glycolysis. Defects in mitochondrial activity in ft mutants are independent of Hippo and PCP signaling and are reminiscent of the Warburg effect.

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