The Dysphoric Component of Stress Is Encoded by Activation of the Dynorphin κ-Opioid System

Дисфорический компонент стресса кодируется активацией κ-опиоидной системы динорфина
Benjamin B. Land, Michael R. Bruchas, Julia C. Lemos, Mei Xu, Erica J. Melief, Charles Chavkin
2008-01-09

CRF2 receptorchronic stressdynorphin κ-opioid systemkappa-opioid receptorplace aversion
Stress is a complex human experience having both positive and negative motivational properties. When chronic and uncontrollable, the adverse effects of stress on human health are considerable and yet poorly understood. Here, we report that the dysphoric properties of chronic stress are encoded by the endogenous opioid peptide dynorphin acting on specific stress-related neuronal circuits. Using different forms of stress presumed to evoke dysphoria in mice, we found that repeated forced swim and inescapable footshock both produced aversive behaviors that were blocked by a kappa-opioid receptor (KOR) antagonist and absent in mice lacking dynorphin. Injection of corticotropin-releasing factor (CRF) or urocortin III, key mediators of the stress response, produced place aversion that was also blocked by dynorphin gene deletion or KOR antagonism. CRF-induced place aversion was blocked by the CRF2 receptor antagonist antisauvigine-30, but not by the CRF1 receptor antagonist antalarmin. In contrast, place aversion induced by the KOR agonist U50,488 was not blocked by antisauvigine-30. These results suggest that the aversive effects of stress were mediated by CRF2 receptor stimulation of dynorphin release and subsequent KOR activation. Using a phospho-selective antibody directed against the activated KOR to image sites of dynorphin action in the brain, we found that stress and CRF each caused dynorphin-dependent KOR activation in the basolateral amygdala, nucleus accumbens, dorsal raphe, and hippocampus. The convergence of stress-induced aversive inputs on the dynorphin system was unexpected, implicates dynorphin as a key mediator of dysphoria, and emphasizes kappa-receptor antagonists as promising therapeutics.
1
CRF and urocortin III induced place aversion through dynorphin and KOR signaling; CRF-induced aversion specifically required CRF2, not CRF1, receptors.
2
Chronic stress-induced dysphoria in mice is mediated by endogenous dynorphin activation of kappa-opioid receptors (KORs).
3
Repeated forced swim and inescapable footshock produced aversive behaviors that were prevented by KOR antagonism and absent in dynorphin-deficient mice.
4
Stress and CRF caused dynorphin-dependent KOR activation in the basolateral amygdala, nucleus accumbens, dorsal raphe, and hippocampus.
5
The findings identify dynorphin as a convergent mediator of stress-related dysphoria and support KOR antagonists as potential therapeutics.

The dynorphin–kappa-opioid receptor system in stress-related neuronal circuits of mice

The neural and molecular mechanisms by which chronic stress and CRF signaling produce dysphoria through CRF2-dependent dynorphin release and subsequent KOR activation

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2008-01-09
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Benjamin B. Land
Michael R. Bruchas
Julia C. Lemos
Mei Xu
Erica J. Melief
Charles Chavkin
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