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Cyclophilin D Interacts with Bcl2 and Exerts an Anti-apoptotic Effect

Overview
Journal J Biol Chem
Specialty Biochemistry
Date 2009 Feb 21
PMID 19228691
Citations 52
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Abstract

Cyclophilin D (CypD) is a mitochondrial immunophilin and a key positive regulator of the mitochondrial permeability transition (MPT). Several reports have shown that CypD is overexpressed in various tumors, where it has an anti-apoptotic effect. Because the MPT is a cell death-inducing phenomenon, we hypothesized that the anti-apoptotic effect of CypD is independent of the MPT but is due to its interaction with some key apoptosis regulator, such as Bcl2. Our data indicate that CypD indeed interacts with Bcl2 as confirmed with co-immunoprecipitation, pulldown, and mammalian two-hybrid assays. A cyclophilin D inhibitor, cyclosporine A, disrupts the CypD-Bcl2 interaction. CypD enhances the limiting effect of Bcl2 on the tBid-induced release of cytochrome c from mitochondria, which is not mediated via the MPT. Gain- and loss-of-function experiments confirm that CypD has a limiting effect on cytochrome c release from mitochondria and that such an effect of CypD is cyclosporine A- and Bcl2-dependent. On a cellular level, overexpression or knockdown of CypD respectively decreases or increases cytochrome c release from mitochondria and overall cell sensitivity to apoptosis progressing via the "intrinsic" pathway. Therefore, we here describe a novel function of CypD as a Bcl2 collaborator and an inhibitor of cytochrome c release from mitochondria independent of the MPT. This function of CypD may explain the anti-apoptotic effect of this protein observed in various cancer cells. The fact that some tumors overexpress CypD suggests that this may be an additional mechanism of suppression of apoptosis in cancer.

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References
1.
Halestrap A, Kerr P, Javadov S, Woodfield K . Elucidating the molecular mechanism of the permeability transition pore and its role in reperfusion injury of the heart. Biochim Biophys Acta. 1998; 1366(1-2):79-94. DOI: 10.1016/s0005-2728(98)00122-4. View

2.
Monaghan P, Robertson D, Amos T, Dyer M, Mason D, Greaves M . Ultrastructural localization of bcl-2 protein. J Histochem Cytochem. 1992; 40(12):1819-25. DOI: 10.1177/40.12.1453000. View

3.
Machida K, Ohta Y, Osada H . Suppression of apoptosis by cyclophilin D via stabilization of hexokinase II mitochondrial binding in cancer cells. J Biol Chem. 2006; 281(20):14314-20. DOI: 10.1074/jbc.M513297200. View

4.
Brenner C, Cadiou H, Vieira H, Zamzami N, Marzo I, Xie Z . Bcl-2 and Bax regulate the channel activity of the mitochondrial adenine nucleotide translocator. Oncogene. 2000; 19(3):329-36. DOI: 10.1038/sj.onc.1203298. View

5.
Baines C, Kaiser R, Purcell N, Blair N, Osinska H, Hambleton M . Loss of cyclophilin D reveals a critical role for mitochondrial permeability transition in cell death. Nature. 2005; 434(7033):658-62. DOI: 10.1038/nature03434. View