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Functional gamma-secretase inhibitors reduce beta-amyloid peptide levels in brain
Authors:Dovey H F  John V  Anderson J P  Chen L Z  de Saint Andrieu P  Fang L Y  Freedman S B  Folmer B  Goldbach E  Holsztynska E J  Hu K L  Johnson-Wood K L  Kennedy S L  Kholodenko D  Knops J E  Latimer L H  Lee M  Liao Z  Lieberburg I M  Motter R N  Mutter L C  Nietz J  Quinn K P  Sacchi K L  Seubert P A  Shopp G M  Thorsett E D  Tung J S  Wu J  Yang S  Yin C T  Schenk D B  May P C  Altstiel L D  Bender M H  Boggs L N  Britton T C  Clemens J C  Czilli D L  Dieckman-McGinty D K  Droste J J  Fuson K S  Gitter B D  Hyslop P A  Johnstone E M  Li W Y  Little S P  Mabry T E  Miller F D  Audia J E
Institution:Department of Neurosurgery, University of Pennsylvania, Philadelphia, USA.
Abstract:To elucidate a role for the cytoskeletal protein actin in post-traumatic apoptotic cell death, the ability of actin-containing tissue extracts to inhibit exogenous DNase I was evaluated. In addition, cortical, hippocampal and thalamic extracts were examined for caspase-mediated actin cleavage and changes in actin polymerization state. Rats were anesthetized, subjected to lateral fluid percussion brain injury of moderate severity, and euthanized at 1 h, 6 h, 24 h, 1 week or 3 weeks post-injury (n = 3 per time-point). Tissue extracts from all brain regions of sham (uninjured) animals inhibited exogenous DNase I activity to a significant extent. However, inhibition of DNase I was significantly reduced at 1 h and 6 h in the injured hippocampus, and at 1 h, 6 h and 3 weeks in the thalamus. DNase I in cortical extracts of all injured animals was inhibited to a similar extent as that in uninjured animals. Actin fragments consistent with caspase-mediated proteolysis were observed in immunoblots of the injured hippocampus and thalamus at 1 h and 24 h, respectively, and were present up to 3 weeks post-injury. Transient actin hyperpolymerization was observed at 1 and 6 h post-injury in the thalamus and hippocampus, while actin depolymerization was observed at 1 and 3 weeks in the cortex and thalamus. Collectively our data suggest that DNase I disinhibition following brain trauma is associated predominantly with actin hyperpolymerization but also with actin depolymerization and concomitant caspase-mediated actin proteolysis.
Keywords:apoptosis  caspase  DNA fragmentation  head injury  rats
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