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Research Articles, Behavioral/Cognitive

A Deletion Variant of the α2b-Adrenoceptor Modulates the Stress-Induced Shift from “Cognitive” to “Habit” Memory

Lisa Wirz, Jan Wacker, Andrea Felten, Martin Reuter and Lars Schwabe
Journal of Neuroscience 22 February 2017, 37 (8) 2149-2160; https://doi.org/10.1523/JNEUROSCI.3507-16.2017
Lisa Wirz
1Department of Cognitive Psychology and
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Jan Wacker
2Department of Differential Psychology, University of Hamburg, 20146 Hamburg, Germany, and
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Andrea Felten
3Department of Differential and Biological Psychology, University of Bonn, 53111 Bonn, Germany
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Martin Reuter
3Department of Differential and Biological Psychology, University of Bonn, 53111 Bonn, Germany
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Lars Schwabe
1Department of Cognitive Psychology and
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Abstract

Stress induces a shift from hippocampus-based “cognitive” toward dorsal striatum-based “habitual” learning and memory. This shift is thought to have important implications for stress-related psychopathologies, including post-traumatic stress disorder (PTSD). However, there is large individual variability in the stress-induced bias toward habit memory, and the factors underlying this variability are completely unknown. Here we hypothesized that a functional deletion variant of the gene encoding the α2b-adrenoceptor (ADRA2B), which has been linked to emotional memory processes and increased PTSD risk, modulates the stress-induced shift from cognitive toward habit memory. In two independent experimental studies, healthy humans were genotyped for the ADRA2B deletion variant. After a stress or control manipulation, participants completed a dual-solution learning task while electroencephalographic (Study I) or fMRI measurements (Study II) were taken. Carriers compared with noncarriers of the ADRA2B deletion variant exhibited a significantly reduced bias toward habit memory after stress. fMRI results indicated that, whereas noncarriers of the ADRA2B deletion variant showed increased functional connectivity between amygdala and putamen after stress, this increase in connectivity was absent in carriers of the deletion variant, who instead showed overall enhanced connectivity between amygdala and entorhinal cortex. Our results indicate that a common genetic variation of the noradrenergic system modulates the impact of stress on the balance between cognitive and habitual memory systems, most likely via altered amygdala orchestration of these systems.

SIGNIFICANCE STATEMENT Stressful events have a powerful effect on human learning and memory. Specifically, accumulating evidence suggests that stress favors more rigid dorsal striatum-dependent habit memory, at the expense of flexible hippocampus-dependent cognitive memory. Although this shift may have important implications for understanding mental disorders, such as post-traumatic stress disorder, little is known about the source of individual differences in the sensitivity for the stress-induced bias toward habit memory. We report here that a common genetic variation of the noradrenergic system, a known risk factor for post-traumatic stress disorder, modulates the stress-induced shift from cognitive to habit memory, most likely through altered crosstalk between the hippocampus and dorsal striatum with the amygdala, a key structure in emotional memory.

  • amygdala
  • dorsal striatum
  • hippocampus
  • memory
  • noradrenaline
  • stress
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The Journal of Neuroscience: 37 (8)
Journal of Neuroscience
Vol. 37, Issue 8
22 Feb 2017
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A Deletion Variant of the α2b-Adrenoceptor Modulates the Stress-Induced Shift from “Cognitive” to “Habit” Memory
Lisa Wirz, Jan Wacker, Andrea Felten, Martin Reuter, Lars Schwabe
Journal of Neuroscience 22 February 2017, 37 (8) 2149-2160; DOI: 10.1523/JNEUROSCI.3507-16.2017

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A Deletion Variant of the α2b-Adrenoceptor Modulates the Stress-Induced Shift from “Cognitive” to “Habit” Memory
Lisa Wirz, Jan Wacker, Andrea Felten, Martin Reuter, Lars Schwabe
Journal of Neuroscience 22 February 2017, 37 (8) 2149-2160; DOI: 10.1523/JNEUROSCI.3507-16.2017
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Keywords

  • amygdala
  • dorsal striatum
  • hippocampus
  • memory
  • noradrenaline
  • stress

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