A putative vesicular transporter expressed in Drosophila mushroom bodies that mediates sexual behavior may define a novel neurotransmitter system

Storage and release of classical and amino acid neurotransmitters requires vesicular transporters. Some neurons lack known vesicular transporters, suggesting additional neurotransmitter systems remain unidentified. Insect mushroom bodies (MBs) are critical for several behaviors, including learning,...

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Veröffentlicht in:Neuron (Cambridge, Mass.) Mass.), 2011-10, Vol.72 (2), p.316-329
Hauptverfasser: Brooks, Elizabeth S., Greer, Christina L., Romero-Calderón, Rafael, Serway, Christine N., Grygoruk, Anna, Haimovitz, Jasmine M., Nguyen, Bac T., Najibi, Rod, Tabone, Christopher J., de Belle, J. Steven, Krantz, David E.
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Sprache:eng
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Zusammenfassung:Storage and release of classical and amino acid neurotransmitters requires vesicular transporters. Some neurons lack known vesicular transporters, suggesting additional neurotransmitter systems remain unidentified. Insect mushroom bodies (MBs) are critical for several behaviors, including learning, but the neurotransmitters released by the intrinsic Kenyon cells (KCs) remain unknown. Likewise, KCs do not express a known vesicular transporter. We report the identification of a novel Drosophila gene portabella ( prt ) that is structurally similar to known vesicular transporters. Both larval and adult brains express PRT in the KCs of the MBs. Additional PRT cells project to the central complex and optic ganglia. prt mutation causes an olfactory learning deficit and an unusual defect in the male’s position during copulation that is rescued by expression in KCs. Since prt is expressed in neurons that lack other known vesicular transporters or neurotransmitters, it may define a previously unknown neurotransmitter system responsible for sexual behavior and a component of olfactory learning.
ISSN:0896-6273
1097-4199
DOI:10.1016/j.neuron.2011.08.032