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Nitric oxide is involved in ischemia-induced apoptosis in brain: a study in neuronal nitric oxide synthase null mice
B Elibol1, F Söylemezoglu, I Unal
1Department of Neurology, Faculty of Medicine, and Institute of neurological Sciences and Psychiatry, Hacettepe university, Ankara, Turkey.
Abstract:
Nitric oxide can promote or inhibit apoptosis depending on the cell type and coexisting metabolic or experimental conditions. We examined the impact of nitric oxide on development of apoptosis 6, 24, and 72 h after permanent middle cerebral artery occlusion in mutant mice that lack the ability to generate nitric oxide from neuronal nitric oxide synthase. Adjacent coronal sections passing through the anterior commissure were stained with hematoxylin and eosin or terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling (TUNEL). Immunoblotting was used to identify changes in the anti- and proapoptotic proteins Bcl-2 and Bax, respectively. Activation of caspases was assessed by appearance of actin cleavage products using a novel antiserum directed against 32-kDa actin fragment (fractin). In the neuronal nitric oxide synthase mutant mouse, infarct size and TUNEL positive apoptotic neurons were reduced compared to the wild-type controls. At 6 h, Bcl-2 levels in the ischemic hemisphere were increased in mutants but decreased in the wild-type strain. Bax levels did not change significantly. Caspase-mediated actin cleavage appeared in the ischemic hemisphere at this time point, and was significantly less in mutant brains at 72 h compared to the wild-type. The reduction in the number of TUNEL and fractin positive apoptotic cells appears far greater than anticipated based on the smaller lesion size in mutant mice.Hence, from these data we suggest that a deficiency in neuronal nitric oxide production slows the development of apoptotic cell death after ischemic injury and is associated with preserved Bcl-2 levels and delayed activation of effector caspases.
Insights
Nitric oxide deficiency slows apoptotic cell death after ischemic injury. Mutant mice lacking neuronal nitric oxide synthase showed reduced apoptosis and preserved Bcl-2 levels, suggesting a protective role.
Area of Science:
- Neuroscience
- Cell Biology
- Pathology
Background:
- Nitric oxide (NO) plays a dual role in apoptosis, either promoting or inhibiting it based on cellular context.
- Neuronal nitric oxide synthase (nNOS) is a key enzyme in NO production within the nervous system.
Purpose of the Study:
- To investigate the impact of nitric oxide deficiency on apoptosis following ischemic stroke.
- To elucidate the role of neuronal nitric oxide synthase in regulating apoptotic cell death after middle cerebral artery occlusion.
Main Methods:
- Utilized a mouse model lacking neuronal nitric oxide synthase (nNOS mutant mice) and wild-type controls.
- Assessed infarct size and apoptotic neurons using hematoxylin and eosin staining and TUNEL assay.
- Quantified levels of anti-apoptotic (Bcl-2) and pro-apoptotic (Bax) proteins via immunoblotting.
- Evaluated caspase activation by detecting actin cleavage products (fractin).
Main Results:
- nNOS mutant mice exhibited reduced infarct size and fewer TUNEL-positive apoptotic neurons compared to wild-type controls.
- Bcl-2 levels were elevated in the ischemic hemisphere of mutants at 6 hours post-occlusion, while decreasing in wild-type mice.
- Caspase-mediated actin cleavage (fractin) was significantly reduced in mutant brains at 72 hours post-ischemia.
Conclusions:
- A deficiency in neuronal nitric oxide production attenuates the development of apoptotic cell death after ischemic injury.
- Preserved Bcl-2 levels and delayed effector caspase activation are associated with reduced apoptosis in nNOS-deficient mice.
- These findings suggest a neuroprotective role for nNOS deficiency in ischemic stroke by slowing apoptotic processes.