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Induction of Acute Ischemic Stroke in Mice Using the Distal Middle Artery Occlusion Technique
Published on: December 15, 2023
Interaction between XIAP and Smac/DIABLO in the mouse brain after transient focal cerebral ischemia
Atsushi Saito1, Takeshi Hayashi, Shuzo Okuno
1Department of Neurosurgery, Stanford University School of Medicine, Stanford, CA 94305, USA.
Abstract:
The X chromosome-linked inhibitor-of-apoptosis protein (XIAP) contributes to apoptosis regulation after a variety of cell death stimuli. XIAP inhibits the caspase reaction via binding to caspases, and is inhibited via binding to the second mitochondria-derived activator of caspase (Smac)/DIABLO to tightly control apoptotic cell death. However, the interaction among XIAP, Smac/DIABLO, and caspases after in vivo cerebral ischemia is not well known. To clarify this issue, the authors examined time-dependent expression and interaction among XIAP, Smac/DIABLO, and activated caspase-9 by immunohistochemistry, Western blot analysis, and immunoprecipitation using an in vivo transient focal cerebral ischemia model. To examine the relationship of the XIAP pathway to the caspase cascade, a pan-caspase inhibitor was administered. XIAP increased concurrently with the release of Smac/DIABLO and the appearance of activated caspase-9 during the early period after reperfusion injury. The bindings of XIAP to Smac/DIABLO and to caspase-9 and the binding of Smac/DIABLO to caspase-9 reached a peak simultaneously after transient focal cerebral ischemia. Neither XIAP nor Smac/DIABLO expression was affected by caspase inhibition. These results suggest that the XIAP pathway was activated upstream of the caspase cascade and that interaction among XIAP, Smac/DIABLO, and caspase-9 plays an important role in the regulation of apoptotic neuronal cell death after transient focal cerebral ischemia.
Insights
The X chromosome-linked inhibitor-of-apoptosis protein (XIAP) pathway regulates neuronal apoptosis after stroke. XIAP, Smac/DIABLO, and caspase-9 interactions are key to controlling cell death following cerebral ischemia.
Area of Science:
- Neuroscience
- Cell Biology
- Biochemistry
Background:
- The X chromosome-linked inhibitor-of-apoptosis protein (XIAP) regulates apoptosis by inhibiting caspases.
- The second mitochondria-derived activator of caspase (Smac)/DIABLO antagonizes XIAP, modulating apoptosis.
- The precise roles of XIAP, Smac/DIABLO, and caspase interactions in cerebral ischemia remain unclear.
Purpose of the Study:
- To investigate the time-dependent expression and interaction of XIAP, Smac/DIABLO, and activated caspase-9 following in vivo transient focal cerebral ischemia.
- To elucidate the relationship between the XIAP pathway and the caspase cascade in the context of ischemic stroke.
Main Methods:
- Utilized an in vivo transient focal cerebral ischemia model in rodents.
- Employed immunohistochemistry, Western blot analysis, and immunoprecipitation to assess protein expression and interactions.
- Administered a pan-caspase inhibitor to examine its effect on the XIAP pathway.
Main Results:
- XIAP expression increased concurrently with Smac/DIABLO release and activated caspase-9 appearance post-reperfusion.
- Peak interactions among XIAP, Smac/DIABLO, and caspase-9 occurred simultaneously after ischemia.
- Caspase inhibition did not alter XIAP or Smac/DIABLO expression.
Conclusions:
- The XIAP pathway is activated upstream of the caspase cascade during cerebral ischemia.
- The interplay between XIAP, Smac/DIABLO, and caspase-9 is crucial for regulating apoptotic neuronal death after transient focal cerebral ischemia.
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