The Mitochondrial-Targeted Compound SS-31 Re-Energizes Ischemic Mitochondria by Interacting with Cardiolipin

被引:399
作者
Birk, Alexander V. [1 ,4 ]
Liu, Shaoyi [1 ,4 ]
Soong, Yi [1 ,4 ]
Mills, William [1 ]
Singh, Pradeep [2 ]
Warren, J. David [2 ]
Seshan, Surya V. [3 ]
Pardee, Joel D. [5 ]
Szeto, Hazel H. [1 ,4 ]
机构
[1] Weill Cornell Med Coll, Dept Pharmacol, New York, NY 10021 USA
[2] Weill Cornell Med Coll, Dept Biochem, New York, NY 10021 USA
[3] Weill Cornell Med Coll, Dept Pathol, New York, NY 10021 USA
[4] Weill Cornell Med Coll, Res Program Mitochondrial Therapeut, New York, NY 10021 USA
[5] Neural Essence LLC, New York, NY USA
来源
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY | 2013年 / 24卷 / 08期
基金
美国国家卫生研究院;
关键词
CYTOCHROME-C RELEASE; PERMEABILITY TRANSITION; PEROXIDASE-ACTIVITY; ANTIOXIDANT PEPTIDE; ELECTRON-TRANSPORT; RESPIRATORY-CHAIN; RABBIT HEART; REDOX STATE; REPERFUSION; FLUORESCENT;
D O I
10.1681/ASN.2012121216
中图分类号
R5 [内科学]; R69 [泌尿科学(泌尿生殖系疾病)];
学科分类号
100201 [内科学]; 100221 [泌尿外科学];
摘要
Ischemia causes AKI as a result of ATP depletion, and rapid recovery of ATP on reperfusion is important to minimize tissue damage. ATP recovery is often delayed, however, because ischemia destroys the mitochondrial cristae membranes required for mitochondrial ATP synthesis. The mitochondria-targeted compound SS-31 accelerates ATP recovery after ischemia and reduces AKI, but its mechanism of action remains unclear. Here, we used a polarity-sensitive fluorescent analog of SS-31 to demonstrate that SS-31 binds with high affinity to cardiolipin, an anionic phospholipid expressed on the inner mitochondrial membrane that is required for cristae formation. In addition, the SS-31/cardiolipin complex inhibited cytochrome c peroxidase activity, which catalyzes cardiolipin peroxidation and results in mitochondrial damage during ischemia, by protecting its heme iron. Pretreatment of rats with SS-31 protected cristae membranes during renal ischemia and prevented mitochondrial swelling. Prompt recovery of ATP on reperfusion led to rapid repair of ATP-dependent processes, such as restoration of the actin cytoskeleton and cell polarity. Rapid recovery of ATP also inhibited apoptosis, protected tubular barrier function, and mitigated renal dysfunction. In conclusion, SS-31, which is currently in clinical trials for ischemia-reperfusion injury, protects mitochondrial cristae by interacting with cardiolipin on the inner mitochondrial membrane.
引用
收藏
页码:1250 / 1261
页数:12
相关论文
共 61 条
[1]
Targeting an antioxidant to mitochondria decreases cardiac ischemia-reperfusion injury [J].
Adlam, VJ ;
Harrison, JC ;
Porteous, CM ;
James, AM ;
Smith, RAJ ;
Murphy, MP ;
Sammut, IA .
FASEB JOURNAL, 2005, 19 (09) :1088-1095
[2]
Mitochondrial H2O2 emission and cellular redox state link excess fat intake to insulin resistance in both rodents and humans [J].
Anderson, Ethan J. ;
Lustig, Mary E. ;
Boyle, Kristen E. ;
Woodlief, Tracey L. ;
Kane, Daniel A. ;
Lin, Chien-Te ;
Price, Jesse W., III ;
Kang, Li ;
Rabinovitch, Peter S. ;
Szeto, Hazel H. ;
Houmard, Joseph A. ;
Cortright, Ronald N. ;
Wasserman, David H. ;
Neufer, P. Darrell .
JOURNAL OF CLINICAL INVESTIGATION, 2009, 119 (03) :573-581
[3]
A mitochondria-targeted inhibitor of cytochrome c peroxidase mitigates radiation-induced death [J].
Atkinson, Jeffrey ;
Kapralov, Alexandr A. ;
Yanamala, Naveena ;
Tyurina, Yulia Y. ;
Amoscato, Andrew A. ;
Pearce, Linda ;
Peterson, Jim ;
Huang, Zhentai ;
Jiang, Jianfei ;
Samhan-Arias, Alejandro K. ;
Maeda, Akihiro ;
Feng, Weihong ;
Wasserloos, Karla ;
Belikova, Natalia A. ;
Tyurin, Vladimir A. ;
Wang, Hong ;
Fletcher, Jackie ;
Wang, Yongsheng ;
Vlasova, Irina I. ;
Klein-Seetharaman, Judith ;
Stoyanovsky, Detcho A. ;
Bayir, Huelya ;
Pitt, Bruce R. ;
Epperly, Michael W. ;
Greenberger, Joel S. ;
Kagan, Valerian E. .
NATURE COMMUNICATIONS, 2011, 2
[4]
Mechanism of actin polymerization in cellular ATP depletion [J].
Atkinson, SJ ;
Hosford, MA ;
Molitoris, BA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (07) :5194-5199
[5]
Prognosis for long-term survival and renal recovery in critically ill patients with severe acute renal failure: a population-based study [J].
Bagshaw, SM ;
Laupland, KB ;
Doig, CJ ;
Mortis, G ;
Fick, GH ;
Mucenski, M ;
Godinez-Luna, T ;
Svenson, LW ;
Rosenal, T .
CRITICAL CARE, 2005, 9 (06) :R700-R709
[6]
Cardiolipin switch in mitochondria:: Shutting off the reduction of cytochrome c and turning on the peroxidase activity [J].
Basova, Liana V. ;
Kurnikov, Igor V. ;
Wang, Lei ;
Ritov, Vladimir B. ;
Belikova, Natalia A. ;
Vlasova, Irina I. ;
Pacheco, Andy A. ;
Winnica, Daniel E. ;
Peterson, Jim ;
Bayir, Hulya ;
Waldeck, David H. ;
Kagan, Valerian E. .
BIOCHEMISTRY, 2007, 46 (11) :3423-3434
[7]
Peroxidase activity and structural transitions of cytochrome c bound to cardiolipin-containing membranes [J].
Belikova, NA ;
Vladimirov, YA ;
Osipov, AN ;
Kapralov, AA ;
Tyurin, VA ;
Potapovich, MV ;
Basova, LV ;
Peterson, J ;
Kurnikov, IV ;
Kagan, VE .
BIOCHEMISTRY, 2006, 45 (15) :4998-5009
[8]
New strategies to optimize kidney recovery and preservation in transplantation [J].
Bon, Delphine ;
Chatauret, Nicolas ;
Giraud, Sebastien ;
Thuillier, Raphael ;
Favreau, Frederic ;
Hauet, Thierry .
NATURE REVIEWS NEPHROLOGY, 2012, 8 (06) :339-347
[9]
Molecular Design of New Inhibitors of Peroxidase Activity of Cytochrome c/Cardiolipin Complexes: Fluorescent Oxadiazole-Derivatized Cardiolipin [J].
Borisenko, G. G. ;
Kapralov, A. A. ;
Tyurin, V. A. ;
Maeda, A. ;
Stoyanovsky, D. A. ;
Kagan, V. E. .
BIOCHEMISTRY, 2008, 47 (51) :13699-13710
[10]
Chronic renal allograft dysfunction [J].
Chapman, JR ;
O'Connell, PJ ;
Nankivell, BJ .
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 2005, 16 (10) :3015-3026