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Mohacsik, P.

Publications and source records attributed to Mohacsik, P..

2 recordsLinked to original sources

Brain-wide mapping of proglucagon expression in mice identifies fasting-responsive GLP-1 neurons in the posterior hypothalamic nucleus

ObjectiveGlucagon-like peptide-1 (GLP-1), a peptide neurotransmitter in the brain, is synthesized from proglucagon, encoded by the glucagon gene (Gcg). Besides medullary GLP-1 neurons, Gcg-expressing neuron populations were identified in the olfactory bulb and basolateral amygdala. However, several lines of evidence suggest that additional Gcg neuron populations might exist. MethodsWe conducted a brain-wide mapping of Gcg-expressing cells by fluorescent in situ hybridization in C57BL/6J and FVB/Ant mice. Proglucagon and GLP-1 expression were studied with immunofluorescence. We characterized a Gcg-Cre;tdTomato mouse line and studied the expression of proglucagon-processing enzymes in Gcg-expressing neuron populations. We used adeno-associated virus-mediated tracing in Gcg-Cre mice to map the projections of hypothalamic Gcg neurons. ResultsGcg-expressing neuron populations were identified in the olfactory bulb, claustrum, piriform cortex, basolateral amygdala, posterior hippocampus, posterior hypothalamic nucleus (PH), periaqueductal gray/dorsal raphe, and dorsal nucleus of the lateral lemniscus. These neurons express lower Gcg mRNA levels than medullary GLP-1 neurons. Proglucagon and GLP-1-immunoreactivity (C-terminus) were detected in almost all Gcg-expressing neuron populations, along with the mRNAs for prohormone convertases 1/3 and 2, enzymes generating GLP-1 or glucagon, respectively. Fasting markedly increased Gcg mRNA, proglucagon and GLP-1 synthesis in the PH. PH Gcg neurons project densely to the ventral and intermediate lateral septum, preoptic region, ventrolateral preoptic nucleus, lateral hypothalamus and zona incerta, establishing close contacts with both GLP-1 receptor-positive and -negative neurons. ConclusionsProglucagon is expressed in 9 distinct neuron populations. Feeding status regulates GLP-1 synthesis in PH neurons that likely control feeding- or energy balance-related functions.

neuroscience↗

Estrogen-dependent development and transcriptome regulation of the lateral septal kisspeptin system

While hypothalamic kisspeptin (KP) neurons play well-established roles in the estrogen-dependent regulation of reproduction, little is known about extrahypothalamic KP-producing (KPLS) neurons of the lateral septum. Our studies on Kiss1-Cre/ZsGreen transgenic mice revealed that KP expression in the LS is linked to puberty and estrogen receptor signaling and neurons reach higher numbers in females. Viral tracing uncovered that KPLS axons abundantly innervate gonadotropin-releasing hormone neurons, the hypothalamic supramammillary nucleus and various limbic structures. RNA-Seq analysis of laser-microdissected KPLS neurons revealed a unique transcriptome profile containing markers of GABAergic and peptidergic (Penk, Cartpt, Vgf) cotransmission and 571 estrogen-dependent transcripts. Immunohistochemical evidence for homologous neurons in the post mortem human brain indicate that the KPLS neurons may contribute to evolutionarily conserved regulatory mechanisms. The KPLS system now emerges as a novel player in the estrogen-dependent control of gonadotropin-releasing hormone neurons and currently unknown hypothalamic and limbic functions requiring clarification.

neuroscience↗