首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >A distinct set of Drosophila brain neurons required for neurofibromatosis type 1-dependent learning and memory.
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A distinct set of Drosophila brain neurons required for neurofibromatosis type 1-dependent learning and memory.

机译:神经纤维瘤病1型依赖的学习和记忆所需的一组果蝇大脑神经元。

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Nonspecific cognitive impairments are one of the many manifestations of neurofibromatosis type 1 (NF1). A learning phenotype is also present in Drosophila melanogaster that lack a functional neurofibromin gene (nf1). Multiple studies have indicated that Nf1-dependent learning in Drosophila involves the cAMP pathway, including the demonstration of a genetic interaction between Nf1 and the rutabaga-encoded adenylyl cyclase (Rut-AC). Olfactory classical conditioning experiments have previously demonstrated a requirement for Rut-AC activity and downstream cAMP pathway signaling in neurons of the mushroom bodies. However, Nf1 expression in adult mushroom body neurons has not been observed. Here, we address this discrepancy by demonstrating (1) that Rut-AC is required for the acquisition and stability of olfactory memories, whereas Nf1 is only required for acquisition, (2) that expression of nf1 RNA can be detected in the cell bodies of mushroom body neurons, and (3) that expression of an nf1 transgene only in the alpha/beta subset of mushroom body neurons is sufficient to restore both protein synthesis-independent and protein synthesis-dependent memory. Our observations indicate that memory-related functions of Rut-AC are both Nf1-dependent and -independent, that Nf1 mediates the formation of two distinct memory components within a single neuron population, and that our understanding of Nf1 function in memory processes may be dissected from its role in other brain functions by specifically studying the alpha/beta mushroom body neurons.
机译:非特异性认知障碍是1型神经纤维瘤病(NF1)的许多表现之一。在果蝇中也缺乏功能性神经纤维蛋白基因(nf1)的学习表型。多项研究表明,果蝇中依赖Nf1的学习涉及cAMP途径,包括Nf1和大黄蜂编码的腺苷酸环化酶(Rut-AC)之间的遗传相互作用的证明。嗅觉经典条件实验以前已经证明了蘑菇体神经元中对Rut-AC活性和下游cAMP途径信号传导的需求。但是,尚未观察到成年蘑菇体神经元中的Nf1表达。在这里,我们通过证明(1)Rut-AC是嗅觉记忆的获取和稳定性所必需的,而Nf1仅是嗅觉记忆所必需的,(2)可以检测到nf1 RNA的表达的细胞体来解决这一差异。蘑菇体神经元,以及(3)仅在蘑菇体神经元的alpha / beta子集中表达nf1转基因就足以恢复独立于蛋白质合成和依赖蛋白质合成的记忆。我们的观察结果表明,Rut-AC的记忆相关功能既与Nf1相关,又与Nf1不相关,Nf1介导单个神经元群体内两个不同记忆成分的形成,并且我们对Nf1在记忆过程中功能的理解可能会被分解。通过专门研究α/β蘑菇体神经元来消除其在其他脑功能中的作用。

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