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Bludau, A.

Publications and source records attributed to Bludau, A..

3 recordsLinked to original sources

Septal HDAC1 facilitates long-lasting extinction of social fear in male mice

Social anxiety disorder (SAD) is primarily caused by traumatic social events and is characterized by intense fear and avoidance of socially enriched contexts. Formation of such intense social aversion requires learning of the association between trauma and originally neutral social stimuli. Acetylation of histones in response to learning is critical for long-term memory formation. Class I histone deacetylases (HDACs) have emerged as powerful negative regulators of long-term memory formation. However, the lack of clarity in isoform and spatial specificity in HDAC function exists. Utilizing the social fear conditioning (SFC) as well as cued fear conditioning (CFC) paradigms, we aimed to functionally characterize the role of class I HDACs, especially HDAC1, in the regulation of aversive memories in social versus non-social contexts. Using cFos expression as a marker of cellular activity, we revealed that the lateral septum (LS) was specifically activated post-acquisition in socially fear conditioned (SFC+) mice. We further measured an increase in activity-inducing HDAC1 phosphorylation at serine residues within the septum of SFC+ mice during extinction of social fear. Pharmacological inhibition of HDAC1 within the LS facilitated, while viral overexpression of septal HDAC1 impaired extinction of social fear. Finally, we found that the abovementioned facilitation of extinction memory by HDAC1 inhibition was long-lasting and persists even after 30 days of extinction. Our results show that LS-HDAC1 is a key regulator of long-lasting social fear extinction, which points towards HDAC1 as a potential therapeutic target for SAD.

neuroscience

Chronic oxytocin-driven alternative splicing of CRFR2α induces anxiety

Recently, oxytocin (OXT) has generated considerable interest as potential treatment for psychiatric disorders, including general anxiety disorder or autism spectrum disorder. Therefore, knowledge on the involved molecular processes downstream of OXT receptor (OXTR) activation is indispensable. We reveal that alternative splicing of corticotropin releasing factor receptor 2 (CRFR2) parallels increased anxiety-like behavior following chronic OXT treatment, contrasting the well-known anxiolysis of acute OXT. In detail, chronic OXT shifts the splicing ratio between membrane-bound (mCRFR2) and soluble CRFR2 (sCRFR2) in favor of the latter via ERK1/2-MEF2A signaling. Targeted manipulations of Crfr2 splicing mimic the effect of chronic OXT, confirming its role in the regulation of anxiety-like behavior. Furthermore, chronic OXT triggers cytoplasmic distribution and extracellular release of sCRFR2 into the cerebrospinal fluid, with sCRFR2 levels positively correlating with anxiety-like behavior. Concluding, the dichotomy between anxiolytic mCRFR2 and anxiogenic sCRFR2 is the basis for the deleterious effects of chronic OXT on anxiety. Graphical Abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=200 SRC="FIGDIR/small/255844v1_ufig1.gif" ALT="Figure 1"> View larger version (51K): org.highwire.dtl.DTLVardef@1b50691org.highwire.dtl.DTLVardef@1c22efborg.highwire.dtl.DTLVardef@19a772eorg.highwire.dtl.DTLVardef@69af7_HPS_FORMAT_FIGEXP M_FIG C_FIG

animal behavior and cognition

Concerted but segregated actions of oxytocin and vasopressin within the ventral and dorsal lateral septum determine female aggression

In contrast to males, aggression in females has been rarely studied. Here, we established a rat model of enhanced female aggression using a combination of social isolation and aggression-training to specifically investigate the involvement of the oxytocin (OXT) and vasopressin (AVP) systems within the lateral septum (LS). Using neuropharmacological, optogenetic, chemogenetic as well as microdialyses approaches, we revealed that enhanced OXT release within the ventral LS (vLS), combined with reduced AVP release within the dorsal LS (dLS), are required for female aggression. Accordingly, increased excitability of OXT-responsive neurons in the vLS and decreased excitability of AVP-responsive neurons in the dLS were essential to evoke female aggression. Finally, in vitro activation of OXT receptors in the vLS increased tonic GABAergic inhibition of dLS neurons. Overall, our data demonstrate that septal release of OXT and AVP affects female aggression by differential regulation of the excitatory-inhibitory balance within subnetworks of the LS.

neuroscience