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Medial septal GABAergic projection neurons promote object exploration behavior and type 2 theta rhythm

Authors
Gangadharan, GireeshShin, JonghanKim, Seong-WookKim, AngelaPaydar, AfshinKim, Duk-SooMiyazaki, TaisukeWatanabe, MasahikoYanagawa, YuchioKim, JinhyunKim, Yeon-SooKim, DaesooShin, Hee-Sup
Issue Date
7-Jun-2016
Publisher
National Academy of Sciences
Keywords
Ca(v)3.1 T-type Ca2(+) channel; exploratory behaviors; hippocampal theta rhythm; medial septum; septo-hippocampal; GABAergic neurons
Citation
Proceedings of the National Academy of Sciences of the United States of America, v.113, no.23, pp 6550 - 6555
Pages
6
Journal Title
Proceedings of the National Academy of Sciences of the United States of America
Volume
113
Number
23
Start Page
6550
End Page
6555
URI
https://scholarworks.bwise.kr/sch/handle/2021.sw.sch/9014
DOI
10.1073/pnas.1605019113
ISSN
0027-8424
1091-6490
Abstract
Exploratory drive is one of the most fundamental emotions, of all organisms, that are evoked by novelty stimulation. Exploratory behavior plays a fundamental role in motivation, learning, and well-being of organisms. Diverse exploratory behaviors have been described, although their heterogeneity is not certain because of the lack of solid experimental evidence for their distinction. Here we present results demonstrating that different neural mechanisms underlie different exploratory behaviors. Localized Ca(v)3.1 knockdown in the medial septum (MS) selectively enhanced object exploration, whereas the null mutant (KO) mice showed enhanced-object exploration as well as open-field exploration. In MS knockdown mice, only type 2 hippocampal theta rhythm was enhanced, whereas both type 1 and type 2 theta rhythm were enhanced in KO mice. This selective effect was accompanied by markedly increased excitability of septo-hippocampal GABAergic projection neurons in the MS lacking T-type Ca2+ channels. Furthermore, optogenetic activation of the septo-hippocampal GABAergic pathway in WT mice also selectively enhanced object exploration behavior and type 2 theta rhythm, whereas inhibition of the same pathway decreased the behavior and the rhythm. These findings define object exploration distinguished from open-field exploration and reveal a critical role of T-type Ca2+ channels in the medial septal GABAergic projection neurons in this behavior.
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