Pathological neoangiogenesis depends on oxidative stress regulation by ATM

Y Okuno, A Nakamura-Ishizu, K Otsu, T Suda… - Nature medicine, 2012 - nature.com
Y Okuno, A Nakamura-Ishizu, K Otsu, T Suda, Y Kubota
Nature medicine, 2012nature.com
The ataxia telangiectasia mutated (ATM) kinase, a master regulator of the DNA damage
response (DDR), acts as a barrier to cellular senescence and tumorigenesis. Aside from
DDR signaling, ATM also functions in oxidative defense. Here we show that Atm in mice is
activated specifically in immature vessels in response to the accumulation of reactive
oxygen species (ROS). Global or endothelial-specific Atm deficiency in mice blocked
pathological neoangiogenesis in the retina. This block resulted from increased amounts of …
Abstract
The ataxia telangiectasia mutated (ATM) kinase, a master regulator of the DNA damage response (DDR), acts as a barrier to cellular senescence and tumorigenesis. Aside from DDR signaling, ATM also functions in oxidative defense. Here we show that Atm in mice is activated specifically in immature vessels in response to the accumulation of reactive oxygen species (ROS). Global or endothelial-specific Atm deficiency in mice blocked pathological neoangiogenesis in the retina. This block resulted from increased amounts of ROS and excessive activation of the mitogen activated kinase p38α rather than from defects in the canonical DDR pathway. Atm deficiency also lowered tumor angiogenesis and enhanced the antiangiogenic action of vascular endothelial growth factor (Vegf) blockade. These data suggest that pathological neoangiogenesis requires ATM-mediated oxidative defense and that agents that promote excessive ROS generation may have beneficial effects in the treatment of neovascular disease.
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