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Inaugural Article: A subset of olfactory neurons that selectively express cGMP-stimulated phosphodiesterase (PDE2) and guanylyl cyclase-D define a unique olfactory signal transduction pathway

机译:就职文章:选择性表达cGMP刺激的磷酸二酯酶(PDE2)和鸟苷酸环化酶D的嗅觉神经元子集定义了独特的嗅觉信号转导途径

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摘要

Odorant information is encoded by a series of intracellular signal transduction events thought to be mediated primarily by the second messenger cAMP. We have found a subset of olfactory neurons that express the cGMP-stimulated phosphodiesterase (PDE2) and guanylyl cyclase-D (GC-D), suggesting that cGMP in these neurons also can have an important regulatory function in olfactory signaling. PDE2 and GC-D are both expressed in olfactory cilia where odorant signaling is initiated; however, only PDE2 is expressed in axons. In contrast to most other olfactory neurons, these neurons appear to project to a distinct group of glomeruli in the olfactory bulb that are similar to the subset that have been termed “necklace glomeruli.” Furthermore, this subset of neurons are unique in that they do not contain several of the previously identified components of olfactory signal transduction cascades involving cAMP and calcium, including a calcium/calmodulin-dependent PDE (PDE1C2), adenylyl cyclase III, and cAMP-specific PDE (PDE4A). Interestingly, these latter three proteins are expressed in the same neurons; however, their subcellular distribution is distinct. PDE1C2 and adenylyl cyclase III are expressed almost exclusively in the olfactory cilia whereas PDE4A is present only in the cell bodies and axons. These data strongly suggest that selective compartmentalization of different PDEs and cyclases is an important feature for the regulation of signal transduction in olfactory neurons and likely in other neurons as well. In addition, the data implies that an olfactory signal transduction pathway specifically modulated by cGMP is present in some neurons of the olfactory neuroepithelium.
机译:气味信息由一系列细胞内信号转导事件编码,这些事件被认为主要是由第二信使cAMP介导的。我们已经发现了表达cGMP刺激的磷酸二酯酶(PDE2)和鸟苷酸环化酶D(GC-D)的嗅觉神经元的子集,这表明这些神经元中的cGMP在嗅觉信号传导中也可以具有重要的调节功能。 PDE2和GC-D都在嗅觉纤毛中表达,在嗅觉纤毛中开始发出气味信号。但是,只有PDE2以轴突表达。与大多数其他嗅觉神经元相反,这些神经元似乎投射到嗅球中的一组独特的肾小球,类似于被称为“项链肾小球”的子集。此外,该神经元子集是独特的,因为它们不包含涉及cAMP和钙的嗅觉信号转导级联的先前确定的成分,包括钙/钙调蛋白依赖性PDE(PDE1C2),腺苷酸环化酶III和cAMP特异性PDE(PDE4A)。有趣的是,后三种蛋白质在相同的神经元中表达。但是,它们的亚细胞分布是不同的。 PDE1C2和腺苷酸环化酶III几乎仅在嗅纤毛中表达,而PDE4A仅存在于细胞体和轴突中。这些数据强烈表明,不同的PDE和环化酶的选择性区室化是调节嗅觉神经元以及其他神经元信号转导的重要特征。此外,数据暗示在嗅觉神经上皮的某些神经元中存在由cGMP特异调节的嗅觉信号转导途径。

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