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突触结合蛋白对于麻醉敏感记忆是有选择性需求的。

Synapsin is selectively required for anesthesia-sensitive memory.

机构信息

Universität Würzburg, 97074 Würzburg, Germany.

出版信息

Learn Mem. 2010 Feb 13;17(2):76-9. doi: 10.1101/lm.1661810. Print 2010 Feb.

Abstract

Odor-shock memory in Drosophila melanogaster consists of heterogeneous components each with different dynamics. We report that a null mutant for the evolutionarily conserved synaptic protein Synapsin entails a memory deficit selectively in early memory, leaving later memory as well as sensory motor function unaffected. Notably, a consolidated memory component remaining after cold-anesthesia is not impaired, suggesting that only anesthesia-sensitive memory [ASM] depends on Synapsin. The lack of Synapsin does not further impair the memory deficit of mutants for the rutabaga gene encoding the type I adenylyl cyclase. This suggests that cAMP signaling, through a Synapsin-dependent mechanism, may underlie the formation of a labile memory component.

摘要

在果蝇中,气味震惊记忆由具有不同动态的异构成分组成。我们报告说,突触蛋白 Synapsin 的进化保守的突变体导致早期记忆的记忆缺陷,而不影响后期记忆和感觉运动功能。值得注意的是,在冷麻醉后保留的巩固记忆成分不受损害,这表明只有麻醉敏感记忆 [ASM] 依赖于 Synapsin。Synapsin 的缺乏不会进一步损害编码 I 型腺苷酸环化酶的 rutabaga 基因的突变体的记忆缺陷。这表明 cAMP 信号转导通过 Synapsin 依赖的机制可能是不稳定性记忆成分形成的基础。

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