Mitofilin regulates cytochrome c release during apoptosis by controlling mitochondrial cristae remodeling

► Mitofilin deficiency caused disruption of the cristae structures in HeLa cells. ► Mitofilin deficiency reduced cell proliferation and increased cell sensitivity to apoptotic stimuli. ► Mitofilin deficiency accelerated the release of cytochrome c from mitochondria. ► Mitofilin deficiency accelerate...

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Published inBiochemical and biophysical research communications Vol. 428; no. 1; pp. 93 - 98
Main Authors Yang, Rui-feng, Zhao, Guo-wei, Liang, Shu-ting, Zhang, Yuan, Sun, Li-hong, Chen, Hou-zao, Liu, De-pei
Format Journal Article
LanguageEnglish
Published United States Elsevier Inc 09.11.2012
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Summary:► Mitofilin deficiency caused disruption of the cristae structures in HeLa cells. ► Mitofilin deficiency reduced cell proliferation and increased cell sensitivity to apoptotic stimuli. ► Mitofilin deficiency accelerated the release of cytochrome c from mitochondria. ► Mitofilin deficiency accelerated STS-induced intrinsic apoptotic pathway without interfering with the activation of Bax. Mitochondria amplify caspase-dependent apoptosis by releasing proapoptotic proteins, especially cytochrome c. This process is accompanied by mitochondrial cristae remodeling. Our studies demonstrated that mitofilin, a mitochondrial inner membrane protein, acted as a cristae controller to regulate cytochrome c release during apoptosis. Knockdown of mitofilin in HeLa cells with RNAi led to fragmentation of the mitochondrial network and disorganization of the cristae. Mitofilin-deficient cells showed cytochrome c redistribution between mitochondrial cristae and the intermembrane space (IMS) upon intrinsic apoptotic stimuli. In vitro cytochrome c release experiments further confirmed that, compared with the control group, tBid treatment led to an increase in cytochrome c release from mitofilin-deficient mitochondria. Furthermore, the cells with mitofilin knockdown were more prone to apoptosis by accelerating cytochrome c release upon the intrinsic apoptotic stimuli than controls. Moreover, mitofilin deficiency did not interfere with the activation of proapoptotic member Bax upon intrinsic apoptotic stimuli. Thus, mitofilin distinctly functions in cristae remodeling and controls cytochrome c release during apoptosis.
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ISSN:0006-291X
1090-2104
DOI:10.1016/j.bbrc.2012.10.012