Specific components of aversive odor memory in Drosophila melanogaster | Synapsin and Bruchpilot, two presynaptic proteins underlying specific phases of olfactory aversive memory in the fruit fly. Cet article n’est pas disponible.
Langue : allemand
Edité par Südwestdeutscher Verlag für Hochschulschriften, 2015
- Livre broché
- Neuf

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Specific components of aversive odor memory in Drosophila melanogaster | Synapsin and Bruchpilot, two presynaptic proteins underlying specific phases of olfactory aversive memory in the fruit fly | Stephan Knapek | Taschenbuch | 88 S. | Deutsch | 2015 | Südwestdeutscher Verlag für Hochschulschriften | EAN 9783838120614 | Verantwortliche Person für die EU: preigu GmbH & Co. KG, Lengericher Landstr. 19, 49078 Osnabrück, mail[at]preigu[dot]de | Anbieter: preigu.
N° de réf. du vendeur 106907219
- Titre
- Specific components of aversive odor memory in Drosophila melanogaster | Synapsin and Bruchpilot, two presynaptic proteins underlying specific phases of olfactory aversive memory in the fruit fly
- Auteur
- Stephan Knapek
- Éditeur
- Südwestdeutscher Verlag für Hochschulschriften
- Année de publication
- 2015
- État de l'article
- Neu
- Reliure
- Taschenbuch
- Langue
- allemand
- ISBN à 10 chiffres
- 3838120612
- ISBN à 13 chiffres
- 9783838120614
- Poids de l'article
- 149 grammes
- Dimensions
- 220 x 150 x 6 mm
- Catalogues du vendeur
- Bücher
Memory is dynamic: after pairing an odor with electric shocks, flies form an aversive odor memory that lasts for several hours and consists of qualitatively different components. An anesthesia-sensitive memory component (ASM) decays rapidly, whereas a consolidated anesthesia-resistant memory component (ARM) lasts significantly longer. Here the author shows that the evolutionary conserved phosphoprotein Synapsin is selectively required for the labile ASM. Synapsin is associated with a reserve pool of vesicles at the presynapse and is required to maintain vesicle release specifically under sustained high frequency nerve stimulation. In contrast, the requirement of the active zone protein Bruchpilot is most pronounced in immediate vesicle release. The author shows that Bruchpilot is required for aversive olfactory memory and localizes the requirement of Bruchpilot to the Kenyon cells of the mushroom body, the second-order olfactory interneurons in Drosophila. He demonstrates that Bruchpilot preferentially functions for the consolidated ARM. Thus, different presynaptic proteins can dissociate consolidated and labile components of olfactory memory.
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