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Johnson, S. T.

Publications and source records attributed to Johnson, S. T..

3 recordsLinked to original sources

Supramammillary projections to the lateral preoptic area drive dopamine release and active behavior

The supramammillary nucleus (SuM) is known to promote active, approach-oriented behaviors by engaging ventral tegmental area (VTA) dopamine neurons projecting to the nucleus accumbens (NAc), primarily via a glutamatergic SuM[->]medial septum (MS) pathway. However, the role of other SuM projections in this process remains unclear. Here we combined anatomical tracing, fiber photometry, chemogenetic, and optogenetic approaches to investigate the SuM[->]lateral preoptic area (LPO) pathway. We found that SuM[->]LPO neurons possess extensive collateral projections and are inhibited during consummatory behavior but activated by aversive and unexpected stimuli. Chemogenetic activation of these neurons reduced water intake and immobility during stress, while inhibition enhanced the appetitive phase for ingestive behavior and fear-related immobility. Optogenetic stimulation of SuM[->]LPO terminals reinforced behavior and elicited dopamine release in the NAc. These findings identify the SuM[->]LPO pathway as a distinct circuit that, alongside the SuM[->]MS pathway, engages mesolimbic dopamine signaling to facilitate active behavioral responses to environmental challenges.

neuroscience↗

Reinforcing Nicotine Doses Activate Supramammillary VGluT2 Neurons in Mice

BackgroundAlthough nicotine reinforcement is often attributed to mesolimbic dopamine neurons in the ventral tegmental area, accumulating evidence indicates that additional brain circuits contribute to its reinforcing effects. AimsThe hypothalamic supramammillary region (SuM) has been implicated as one such substrate, yet the cellular targets and circuit mechanisms through which nicotine engages this region remain poorly understood. MethodsWe combined RNAscope in situ hybridization to identify nicotinic acetylcholine receptor (nAChR) subunits, intravenous nicotine self-administration in mice to determine doses that reliably support reinforcement, and fiber photometry to monitor calcium activity in SuM VGluT2 neurons in vivo. ResultsMice exhibited reliable nicotine self-administration across a range of doses under fixed-ratio and progressive-ratio schedules. RNAscope analysis revealed prominent expression of the {beta}2 nAChR subunit in VGluT2-expressing neurons projecting from the SuM to the medial septum. Fiber photometry recordings showed that reinforcing doses of nicotine produced rapid, infusion-locked increases in GCaMP signals in SuM VGluT2 neurons. ConclusionsThese findings identify nAChR-expressing SuM neurons as a candidate circuit substrate engaged by reinforcing doses of nicotine and extend current models of nicotine reinforcement beyond canonical mesolimbic dopamine pathways.

neuroscience↗

Orexinergic Input to the Supramammillary Region Links Threat Salience to Approach Behavior and Dopamine Release

Orexin (hypocretin) neurons (OXN) broadcast arousal-related signals across the forebrain, yet how their inputs shape motivated behavior remains poorly understood. The supramammillary region (SuM), a posterior hypothalamic structure implicated in arousal, active coping and reward-seeking, receives dense orexin innervation. Here, we define how orexinergic terminals in the SuM (OXNSuM) integrate threat salience with approach motivational processes. Using viral tracing and RNAscope, we show that SuM neurons express both orexin receptor subtypes, with type 2 receptors predominating. Fiber photometry recordings from OXNSuM terminals reveal strong activation by footshock and conditioned threat cues, modest responses to salient sensory stimuli, and pronounced suppression during water consumption. Optogenetic stimulation of OXNSuM terminals reinforces instrumental responding, biases real-time place preference, and elicits rapid, stimulation-locked dopamine release in the nucleus accumbens. These findings identify an orexin-to-SuM pathway that is engaged by uncertainty and threat yet promotes approach behavior through coupling to mesolimbic dopamine, revealing a mechanism linking hypothalamic arousal signals to adaptive motivational responses. SIGNIFICANCE STATEMENTThe supramammillary region (SuM) has emerged as a critical node linking arousal, threat processing, and motivated behavior, yet the sources and functions of its modulatory inputs remain unclear. Here, we identify orexinergic projections to the SuM as a circuit mechanism that couples threat-related salience with approach behavior and nucleus accumbens dopamine signaling. We show that orexin terminals in the SuM are activated by stressful and uncertain stimuli but suppressed during consummatory behavior, and that selective activation of these terminals is positively reinforcing and drives rapid dopamine release. These findings reveal a pathway through which orexin neurons promote active coping and reward-seeking, advancing our understanding of how hypothalamic neuromodulation shapes mesolimbic function and adaptive behavioral responses.

neuroscience↗