Exercise Myokine Irisin Enables Behavioral Stress Resistance in Mice

Exercise Myokine Irisin Enables Behavioral Stress Resistance in Mice

Abstract

Abstract
Physical activity produces widespread benefits to physical and mental health, including protection against stress-related behavioral outcomes. However, the peripheral signals through which physical activity is translated into stress resistance remain incompletely understood. Irisin, an exercise-induced myokine cleaved from the transmembrane protein FNDC5 and released into circulation, has been implicated in improved cognition and neuroprotection, but its role in resistance to behavioral consequences of future adversity has not been examined. Here, we tested whether forced peripheral elevation of irisin is sufficient to protect against stress-induced behavioral outcomes. Adult male C57BL/6 mice received adeno-associated viral (AAV)-mediated peripheral expression of irisin or GFP control. AAV-irisin significantly increased circulating irisin levels, and six weeks later, mice were exposed to inescapable stress, a well-characterized model that produces anxiety-like behaviors, including reducing rodents' natural inclination toward sociability. Elevated circulating irisin prevented the stress-induced reduction in social preference without altering general locomotor activity. Moreover, circulating irisin levels positively predicted individual differences in sociability. Additionally, peripheral irisin elevation increased brain-derived neurotrophic factor (Bdnf) expression, which also positively correlated with circulating irisin levels. Finally, we identified expression of the irisin receptor subunit integrin alphaV within the dorsal raphe nucleus, a key brain region implicated in the behavioral outcomes of inescapable stress that is modulated by prior exercise. Together, these findings identify peripheral irisin as a mediator sufficient to confer resistance to future stress, even in the absence of physical activity.
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