Prevention of neonatal oxygen-induced brain damage by reduction of intrinsic apoptosis

被引:36
作者
Sifringer, M. [1 ,2 ]
Bendix, I. [3 ]
Boerner, C. [2 ]
Endesfelder, S. [2 ]
von Haefen, C.
Kalb, A.
Holifanjaniaina, S. [4 ,5 ]
Prager, S. [3 ]
Schlager, G. W. [3 ]
Keller, M. [3 ]
Jacotot, E. [4 ,5 ,6 ]
Felderhoff-Mueser, U. [3 ]
机构
[1] Charite, Dept Anaesthesiol & Intens Care Med, Campus Virchow Klinikum, D-13353 Berlin, Germany
[2] Charite, Dept Neonatol, D-13353 Berlin, Germany
[3] Univ Hosp Essen, Dept Paediat 1, Essen, Germany
[4] Hop Robert Debre, INSERM, U676, F-75019 Paris, France
[5] Univ Paris Diderot, UMR 676, Paris, France
[6] Univ London Imperial Coll Sci Technol & Med, Dept Reprod Biol, Hammersmith Hosp, London, England
基金
英国医学研究理事会;
关键词
caspase inhibitor; neonatal cell death; brain damage; hyperoxia; neuroprotection; INDUCED CELL-DEATH; CASPASE-2; ACTIVATION; SIGNALING PATHWAYS; NEURONAL DEATH; WHITE-MATTER; INJURY; BCL-2; NEURODEGENERATION; ISCHEMIA; PROTEINS;
D O I
10.1038/cddis.2011.133
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Within the last decade, it became clear that oxygen contributes to the pathogenesis of neonatal brain damage, leading to neurocognitive impairment of prematurely born infants in later life. Recently, we have identified a critical role for receptor-mediated neuronal apoptosis in the immature rodent brain. However, the contribution of the intrinsic apoptotic pathway accompanied by activation of caspase-2 under hyperoxic conditions in the neonatal brain still remains elusive. Inhibition of caspases appears a promising strategy for neuroprotection. In order to assess the influence of specific caspases on the developing brain, we applied a recently developed pentapeptide-based group II caspase inhibitor (5-(2,6-difluorophenoxy)-3(R,S)-(2(S)-(2(S)-(3-methoxycarbonyl-2(S)-(3-methyl-2(S)-((quinoline-2-carbonyl)-amino)-butyrylamino)propionylamino) 3-methylbutyrylamino) propionylamino)-4-oxo-pentanoic acid methyl ester; TRP601). Here, we report that elevated oxygen (hyperoxia) triggers a marked increase in active caspase-2 expression, resulting in an initiation of the intrinsic apoptotic pathway with upregulation of key proteins, namely, cytochrome c, apoptosis protease-activating factor-1, and the caspase-independent protein apoptosis-inducing factor, whereas BH3-interacting domain death agonist and the anti-apoptotic protein B-cell lymphoma-2 are downregulated. These results coincide with an upregulation of caspase-3 activity and marked neurodegeneration. However, single treatment with TRP601 at the beginning of hyperoxia reversed the detrimental effects in this model. Hyperoxia-mediated neurodegeneration is supported by intrinsic apoptosis, suggesting that the development of highly selective caspase inhibitors will represent a potential useful therapeutic strategy in prematurely born infants. Cell Death and Disease (2012) 3, e250; doi:10.1038/cddis.2011.133; published online 12 January 2012
引用
收藏
页码:e250 / e250
页数:8
相关论文
共 40 条
[1]   Apoptosome: a platform for the activation of initiator caspases [J].
Bao, Q. ;
Shi, Y. .
CELL DEATH AND DIFFERENTIATION, 2007, 14 (01) :56-65
[2]   Characterization of Cytoplasmic Caspase-2 Activation by Induced Proximity [J].
Bouchier-Hayes, Lisa ;
Oberst, Andrew ;
McStay, Gavin P. ;
Connell, Samuel ;
Tait, Stephen W. G. ;
Dillon, Christopher P. ;
Flanagan, Jonathan M. ;
Beere, Helen M. ;
Green, Douglas R. .
MOLECULAR CELL, 2009, 35 (06) :830-840
[3]   BAX insertion, oligomerization, and outer membrane permeabilization in brain mitochondria: Role of permeability transition and SH-redox regulation [J].
Brustovetsky, Tatiana ;
Li, Tsyregma ;
Yang, Youyun ;
Zhang, Jiang-Ting ;
Antonsson, Bruno ;
Brustovetsky, Nickolay .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS, 2010, 1797 (11) :1795-1806
[4]  
Carlsson Y, 2011, ANN NEUROL IN PRESS
[5]   Upstream control of apoptosis by caspase-2 in serum-deprived primary neurons [J].
Chauvier, D ;
Lecoeur, H ;
Langonné, A ;
Borgne-Sanchez, A ;
Mariani, J ;
Martinou, JC ;
Rebouillat, D ;
Jacotot, E .
APOPTOSIS, 2005, 10 (06) :1243-1259
[6]   Targeting neonatal ischemic brain injury with a pentapeptide-based irreversible caspase inhibitor [J].
Chauvier, D. ;
Renolleau, S. ;
Holifanjaniaina, S. ;
Ankri, S. ;
Bezault, M. ;
Schwendimann, L. ;
Rousset, C. ;
Casimir, R. ;
Hoebeke, J. ;
Smirnova, M. ;
Debret, G. ;
Trichet, A-P ;
Carlsson, Y. ;
Wang, X. ;
Bernard, E. ;
Hebert, M. ;
Rauzier, J-M ;
Matecki, S. ;
Lacampagne, A. ;
Rustin, P. ;
Mariani, J. ;
Hagberg, H. ;
Gressens, P. ;
Charriaut-Marlangue, C. ;
Jacotot, E. .
CELL DEATH & DISEASE, 2011, 2 :e203-e203
[7]   The BCL-2 Family Reunion [J].
Chipuk, Jerry E. ;
Moldoveanu, Tudor ;
Llambi, Fabien ;
Parsons, Melissa J. ;
Green, Douglas R. .
MOLECULAR CELL, 2010, 37 (03) :299-310
[8]   Caspase regulation of genotoxin-induced neural precursor cell death [J].
D'Sa, C ;
Klocke, BJ ;
Cecconi, F ;
Lindsten, T ;
Thompson, CB ;
Korsmeyer, SJ ;
Flavell, RA ;
Roth, KA .
JOURNAL OF NEUROSCIENCE RESEARCH, 2003, 74 (03) :435-445
[9]   Bcl-2 and Bax Interact via the BH1-3 Groove-BH3 Motif Interface and a Novel Interface Involving the BH4 Motif [J].
Ding, Jingzhen ;
Zhang, Zhi ;
Roberts, G. Jane ;
Falcone, Mina ;
Miao, Yiwei ;
Shao, Yuanlong ;
Zhang, Xuejun C. ;
Andrews, David W. ;
Lin, Jialing .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2010, 285 (37) :28749-28763
[10]   A Critical Role for Fas/CD-95 Dependent Signaling Pathways in the Pathogenesis of Hyperoxia-Induced Brain Injury [J].
Dzietko, Mark ;
Boos, Vinzenz ;
Sifringer, Marco ;
Polley, Oliver ;
Gerstner, Bettina ;
Genz, Kerstin ;
Endesfelder, Stefanie ;
Boerner, Constanze ;
Jacotot, Etienne ;
Chauvier, David ;
Obladen, Michael ;
Buehrer, Christoph ;
Felderhoff-Mueser, Ursula .
ANNALS OF NEUROLOGY, 2008, 64 (06) :664-673