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Keywords
(13)
Apoptosis Inducing Factor
Cell Death
Dna Fragmentation
Free Radical
Heart Failure
Large Scale
neuronal apoptosis
Oxidant Stress
Programmed Cell Death
ischemia reperfusion
Left Ventricular
Wild Type Mice
Wild Type
Related Publications
(1)
The harlequin mouse mutation downregulates apoptosis-inducing factor
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Publications
Downregulation of Apoptosis-Inducing Factor in Harlequin Mutant Mice Sensitizes the Myocardium to Oxidative Stress-Related Cell Death and Pressure Overload-Induced Decompensation
Downregulation of Apoptosis-Inducing Factor in Harlequin Mutant Mice Sensitizes the Myocardium to Oxidative Stress-Related Cell Death and Pressure Ove
Edit
Downregulation of Apoptosis-Inducing Factor in Harlequin Mutant Mice Sensitizes the Myocardium to Oxidative Stress-Related Cell Death and Pressure Overload-Induced Decompensation
(
Citations: 23
)
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Vanessa P. M. van Empel
,
Anne T. Bertrand
,
Roel van der Nagel
,
Sawa Kostin
,
Pieter A. Doevendans
,
Harry J. Crijns
,
Elly de Wit
,
Wim Sluiter
,
Susan L. Ackerman
,
Leon J. De Windt
Apoptosis-inducing factor (AIF), or
programmed cell death
8 (Pdcd8), is a highly conserved, ubiquitous flavoprotein localized in the mitochondrial intermembrane space. In vivo, AIF provides protection against
neuronal apoptosis
induced by oxidative stress. Conversely, in vitro, AIF has been demonstrated to have a proapoptotic role when, on induction of the mitochondrial death pathway, AIF translocates to the nucleus where it facilitates chromatin condensation and
large scale
DNA fragmentation. To determine the role of AIF in myocardial apoptotic processes, we examined cardiomyocytes from an AIF-deficient mouse mutant, Harlequin (Hq). Hq mutant cardiomyocytes demon- strated increased sensitivity to H2O2-induced cell death. Further, Hq hearts subjected to ischemia/reperfusion revealed more cardiac damage and, unlike wild-type mice, the amount of damage increased with the age of the animal. Aortic banding caused enhanced hypertrophy, increased cardiomyocyte apoptotic and necrotic cell death, and accelerated progression toward maladaptive
left ventricular
remodeling in Hq mutant mice compared with wild-type counterparts. These findings correlated with a reduced capacity of subsarcolemmal mitochondria from Hq mutant hearts to scavenge free radicals. Together, these data demonstrate a critical role for AIF as a cardiac antioxidant in the protection against oxidative stress-induced
cell death
and development of
heart failure
induced by pressure overload. (Circ Res. 2005;96:e92-e101.)
Published in 2010.
Cumulative
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The following links allow you to view full publications. These links are maintained by other sources not affiliated with Microsoft Academic Search.
(
circres.ahajournals.org
)
Citation Context
(8)
...mice are also more susceptible to develop cardiac damage after acute ischemia/reperfusion and heart failure after pressure overload
...
Anne-Sophie Armand
,
et al.
Apoptosis-Inducing Factor Regulates Skeletal Muscle Progenitor Cell Nu...
...42 Moreover, cardiac myocytes isolated from a mouse model with 80% reduction in AIF levels manifested increased cell death induced by oxidative stress, and the hearts of these mice displayed enhanced ischemic damage after
in vivo
I/R
...
M Chiong
,
et al.
Cardiomyocyte death: mechanisms and translational implications
...12,
...
E Hangen
,
et al.
A brain-specific isoform of mitochondrial apoptosis-inducing factor: A...
...Oxidative stress associated with AIF deficiency led to the suggestion that the flavin-binding AIF protein functions as a mitochondrial antioxidant [23,24,33,
57
,58,63]...
...Nevertheless, despite several investigations in this arena, to date the role of AIF in mitochondrial ROS regulation has been ambiguous, with indications for stimulation [55] and inhibition [3,23,
57
,58] in various studies...
Shankar J. Chinta
,
et al.
Reactive oxygen species regulation by AIF and complex I-depleted brain...
...as well as cardiomycytes
...
Fabienne T. Schulthess
,
et al.
Deletion of the Mitochondrial Flavoprotein Apoptosis Inducing Factor (...
References
(35)
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(
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Journal:
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(
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(
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Catherine Communal
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R. John Solaro
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Roger J. Hajjar
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, vol. 99, no. 9, pp. 6252-6256, 2002
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(
Citations: 270
)
ERIC DAUGAS
,
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,
NAOUFAL ZAMZAMI
,
KARINE F. FERRI
,
THEANO IRINOPOULOU
,
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,
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BRIAN LEBER
,
DAVID ANDREWS
,
GUIDO KROEMER
Published in 2000.
Sort by:
Citations
(23)
Mouse models for nuclear DNA-encoded mitochondrial complex I deficiency
(
Citations: 1
)
Saskia Koene
,
Peter H. G. M. Willems
,
Peggy Roestenberg
,
Werner J. H. Koopman
,
Jan A. M. Smeitink
Journal:
Journal of Inherited Metabolic Disease - J INHERIT METAB DIS
, vol. 34, no. 2, pp. 293-307, 2011
Apoptosis-Inducing Factor Regulates Skeletal Muscle Progenitor Cell Number and Muscle Phenotype
Anne-Sophie Armand
,
Iman Laziz
,
Dounia Djeghloul
,
Sylvie Lécolle
,
Anne T. Bertrand
,
Olivier Biondi
,
Leon J. De Windt
,
Christophe Chanoine
Journal:
PLOS One
, vol. 6, no. 11, 2011
Cardiomyocyte death: mechanisms and translational implications
M Chiong
,
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D J Cao
,
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A Criollo
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A Nemchenko
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Journal:
Cell Death and Disease
, vol. 2, no. 12, 2011
Nix-Mediated Apoptosis Links Myocardial Fibrosis, Cardiac Remodeling, and Hypertrophy Decompensation
(
Citations: 13
)
Abhinav Diwan
,
Janaka Wansapura
,
Faisal M. Syed
,
Scot J. Matkovich
,
John N. Lorenz
,
Gerald W. Dorn II
Published in 2010.
A brain-specific isoform of mitochondrial apoptosis-inducing factor: AIF2
(
Citations: 2
)
E Hangen
,
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,
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,
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,
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Journal:
Cell Death and Differentiation - CELL DEATH DIFFERENTIATION
, vol. 17, no. 7, pp. 1155-1166, 2010