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  • NDPK-D (NM23-H4)-mediated e...
    Kagan, V E; Jiang, J; Huang, Z; Tyurina, Y Y; Desbourdes, C; Cottet-Rousselle, C; Dar, H H; Verma, M; Tyurin, V A; Kapralov, A A; Cheikhi, A; Mao, G; Stolz, D; St Croix, C M; Watkins, S; Shen, Z; Li, Y; Greenberg, M L; Tokarska-Schlattner, M; Boissan, M; Lacombe, M-L; Epand, R M; Chu, C T; Mallampalli, R K; Bayır, H; Schlattner, U

    Cell death and differentiation, 07/2016, Volume: 23, Issue: 7
    Journal Article

    Mitophagy is critical for cell homeostasis. Externalization of the inner mitochondrial membrane phospholipid, cardiolipin (CL), to the surface of the outer mitochondrial membrane (OMM) was identified as a mitophageal signal recognized by the microtubule-associated protein 1 light chain 3. However, the CL-translocating machinery remains unknown. Here we demonstrate that a hexameric intermembrane space protein, NDPK-D (or NM23-H4), binds CL and facilitates its redistribution to the OMM. We found that mitophagy induced by a protonophoric uncoupler, carbonyl cyanide m-chlorophenylhydrazone (CCCP), caused externalization of CL to the surface of mitochondria in murine lung epithelial MLE-12 cells and human cervical adenocarcinoma HeLa cells. RNAi knockdown of endogenous NDPK-D decreased CCCP-induced CL externalization and mitochondrial degradation. A R90D NDPK-D mutant that does not bind CL was inactive in promoting mitophagy. Similarly, rotenone and 6-hydroxydopamine triggered mitophagy in SH-SY5Y cells was also suppressed by knocking down of NDPK-D. In situ proximity ligation assay (PLA) showed that mitophagy-inducing CL-transfer activity of NDPK-D is closely associated with the dynamin-like GTPase OPA1, implicating fission-fusion dynamics in mitophagy regulation.