GABAergic neurons in the olfactory cortex projecting to the lateral hypothalamus in mice

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作者
Koshi Murata
Tomoki Kinoshita
Yugo Fukazawa
Kenta Kobayashi
Kazuto Kobayashi
Kazunari Miyamichi
Hiroyuki Okuno
Haruhiko Bito
Yoshio Sakurai
Masahiro Yamaguchi
Kensaku Mori
Hiroyuki Manabe
机构
[1] University of Fukui,Division of Brain Structure and Function, Faculty of Medical Sciences
[2] University of Fukui,Life Science Innovation Center, Faculty of Medical Science
[3] Doshisha University,Laboratory of Neural Information, Graduate School of Brain Science
[4] University of Fukui,Research Center for Child Mental Health Development, Faculty of Medical Sciences
[5] National Institute for Physiological Sciences,Section of Viral Vector Development
[6] Fukushima Medical University School of Medicine,Department of Molecular Genetics, Institute of Biomedical Sciences
[7] RIKEN Centre for Biosystems Dynamics Research,Laboratory for Comparative Connectomics
[8] Kagoshima University Graduate School of Medical and Dental Sciences,Department of Biochemistry and Molecular Biology
[9] The University of Tokyo,Department of Neurochemistry, Graduate School of Medicine
[10] Kochi University,Department of Physiology, Kochi Medical School
[11] The University of Tokyo,Department of Physiology, Graduate School of Medicine
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摘要
Olfaction guides goal-directed behaviours including feeding. To investigate how central olfactory neural circuits control feeding behaviour in mice, we performed retrograde tracing from the lateral hypothalamus (LH), an important feeding centre. We observed a cluster of retrogradely labelled cells distributed in the posteroventral region of the olfactory peduncle. Histochemical analyses revealed that the majority of these retrogradely labelled projection neurons expressed glutamic acid decarboxylase 65/67 (GAD65/67), but not vesicular glutamate transporter 1 (VGluT1). We named this region containing GABAergic projection neurons the ventral olfactory nucleus (VON) to differentiate it from the conventional olfactory peduncle. VON neurons were less immunoreactive for DARPP-32, a striatal neuron marker, compared to neurons in the olfactory tubercle and nucleus accumbens, which distinguished the VON from the ventral striatum. Fluorescent labelling confirmed putative synaptic contacts between VON neurons and olfactory bulb projection neurons. Rabies-virus-mediated trans-synaptic labelling revealed that VON neurons received synaptic inputs from the olfactory bulb, other olfactory cortices, horizontal limb of the diagonal band, and prefrontal cortex. Collectively, these results identify novel GABAergic projection neurons in the olfactory cortex that may integrate olfactory sensory and top-down inputs and send inhibitory output to the LH, which may modulate odour-guided LH-related behaviours.
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