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      Cyclophilin D Promotes Brain Mitochondrial F1FO ATP Synthase Dysfunction in Aging Mice

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          Abstract

          Brain aging is the known strongest risk factor for Alzheimer’s disease (AD). In recent years, mitochondrial deficits have been proposed to be a common mechanism linking brain aging to AD. Therefore, to elucidate the causative mechanisms of mitochondrial dysfunction in aging brains is of paramount importance for our understanding of the pathogenesis of AD, in particular its sporadic form. Cyclophilin D (CypD) is a specific mitochondrial protein. Recent studies have shown that F1FO ATP synthase oligomycin sensitivity conferring protein (OSCP) is a binding partner of CypD. The interaction of CypD with OSCP modulates F1FO ATP synthase function and mediates mitochondrial permeability transition pore (mPTP) opening. Here, we have found that increased CypD expression, enhanced CypD/OSCP interaction, and selective loss of OSCP are prominent brain mitochondrial changes in aging mice. Along with these changes, brain mitochondria from the aging mice demonstrated decreased F1FO ATP synthase activity and defective F1FO complex coupling. In contrast, CypD deficient mice exhibited substantially mitigated brain mitochondrial F1FO ATP synthase dysfunction with relatively preserved mitochondrial function during aging. Interestingly, the aging-related OSCP loss was also dramatically attenuated by CypD depletion. Therefore, the simplest interpretation of this study is that CypD promotes F1FO ATP synthase dysfunction and the resultant mitochondrial deficits in aging brains. In addition, in view of CypD and F1FO ATP synthase alterations seen in AD brains, the results further suggest that CypD-mediated F1FO ATP synthase deregulation is a shared mechanism linking mitochondrial deficits in brain aging and AD.

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          Author and article information

          Journal
          9814863
          21942
          J Alzheimers Dis
          J. Alzheimers Dis.
          Journal of Alzheimer's disease : JAD
          1387-2877
          1875-8908
          27 April 2017
          2017
          04 July 2017
          : 55
          : 4
          : 1351-1362
          Affiliations
          [a ]Department of Biological Sciences, The University of Texas, Dallas, Richardson, TX, USA
          [b ]Department of Neurology, Shandong Provincial Hospital Affiliated to Shandong University, Jinan, Shandong, China
          Author notes
          [* ]Correspondence to: Heng Du, MD, PhD, Department of Biological Sciences, The University of Texas, Dallas, 800 W Campbell Rd., Richardson, TX 75080, USA. Tel.: +1 972 883 3531; Fax: +1 972 883 4551; heng.du@ 123456utdallas.edu
          Article
          PMC5496683 PMC5496683 5496683 nihpa868597
          10.3233/JAD-160822
          5496683
          27834780
          d85e07d6-782c-4f7e-ba42-29ed1a09f0ce
          History
          Categories
          Article

          mitochondria,oligomycin sensitivity conferring protein,F1FO ATP synthase,Cyclophilin D,Aging brain

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