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1.
Genes Brain Behav ; 16(1): 44-55, 2017 Jan.
Article in English | MEDLINE | ID: mdl-27457669

ABSTRACT

We recently developed a conditioned place preference (CPP) procedure, commonly used to study rewarding drug effects, to demonstrate that dominant sexually-experienced CD-1 male mice form CPP to contexts previously associated with defeating subordinate male C57BL/6J mice. Here we further characterized conditioned and unconditioned aggression behavior in CD-1 mice. In Exp. 1 we used CD-1 mice that displayed a variable spectrum of unconditioned aggressive behavior toward younger subordinate C57BL/6J intruder mice. We then trained the CD-1 mice in the CPP procedure where one context was intruder-paired, while a different context was not. We then tested for aggression CPP 1 day after training. In Exp. 2, we tested CD-1 mice for aggression CPP 1 day and 18 days after training. In Exp. 3-4, we trained the CD-1 mice to lever-press for palatable food and tested them for footshock punishment-induced suppression of food-reinforced responding. In Exp. 5, we characterized unconditioned aggression in hybrid CD-1 × C57BL/6J D1-Cre or D2-Cre F1 generation crosses. Persistent aggression CPP was observed in CD-1 mice that either immediately attacked C57BL/6J mice during all screening sessions or mice that gradually developed aggressive behavior during the screening phase. In contrast, CD-1 mice that did not attack the C57BL/6J mice during screening did not develop CPP to contexts previously paired with C57BL/6J mice. The aggressive phenotype did not predict resistance to punishment-induced suppression of food-reinforced responding. CD-1 × D1-Cre or D2-Cre F1 transgenic mice showed strong unconditioned aggression. Our study demonstrates that aggression experience causes persistent CPP and introduces transgenic mice for circuit studies of aggression.


Subject(s)
Aggression , Conditioning, Psychological , Hybridization, Genetic , Reinforcement, Psychology , Sexual Behavior, Animal , Spatial Behavior , Animals , Male , Mice , Mice, Inbred C57BL , Phenotype
2.
Hum Mol Genet ; 19(19): 3734-46, 2010 Oct 01.
Article in English | MEDLINE | ID: mdl-20639397

ABSTRACT

Growing evidence highlights a role for mitochondrial dysfunction and oxidative stress as underlying contributors to Parkinson's disease (PD) pathogenesis. DJ-1 (PARK7) is a recently identified recessive familial PD gene. Its loss leads to increased susceptibility of neurons to oxidative stress and death. However, its mechanism of action is not fully understood. Presently, we report that DJ-1 deficiency in cell lines, cultured neurons, mouse brain and lymphoblast cells derived from DJ-1 patients display aberrant mitochondrial morphology. We also show that these DJ-1-dependent mitochondrial defects contribute to oxidative stress-induced sensitivity to cell death since reversal of this fragmented mitochondrial phenotype abrogates neuronal cell death. Reactive oxygen species (ROS) appear to play a critical role in the observed defects, as ROS scavengers rescue the phenotype and mitochondria isolated from DJ-1 deficient animals produce more ROS compared with control. Importantly, the aberrant mitochondrial phenotype can be rescued by the expression of Pink1 and Parkin, two PD-linked genes involved in regulating mitochondrial dynamics and quality control. Finally, we show that DJ-1 deficiency leads to altered autophagy in murine and human cells. Our findings define a mechanism by which the DJ-1-dependent mitochondrial defects contribute to the increased sensitivity to oxidative stress-induced cell death that has been previously reported.


Subject(s)
Intracellular Signaling Peptides and Proteins/deficiency , Intracellular Signaling Peptides and Proteins/genetics , Mitochondria/genetics , Mitochondria/pathology , Oncogene Proteins/deficiency , Oncogene Proteins/genetics , Parkinson Disease/genetics , Acetylcysteine/pharmacology , Animals , Autophagy/drug effects , Brain/metabolism , Brain/pathology , Cell Death/drug effects , Cell Line , Humans , Mice , Mitochondria/drug effects , Mitochondria/ultrastructure , Mutant Proteins/metabolism , Neostriatum/drug effects , Neostriatum/metabolism , Neostriatum/pathology , Neostriatum/ultrastructure , Neurons/drug effects , Neurons/enzymology , Neurons/pathology , Neurons/ultrastructure , Parkinson Disease/pathology , Peroxiredoxins , Phenotype , Protein Deglycase DJ-1 , Protein Kinases/metabolism , Reactive Oxygen Species/metabolism , Ubiquitin-Protein Ligases/metabolism
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