首页> 外文期刊>The European Journal of Neuroscience >Semaphorin 3A-mediated axon guidance regulates convergence and targeting of P2 odorant receptor axons.
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Semaphorin 3A-mediated axon guidance regulates convergence and targeting of P2 odorant receptor axons.

机译:Semaphorin 3A介导的轴突导向调节P2气味受体轴突的收敛和靶向。

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Abstract Semaphorins are known to play an important role in axon guidance of vertebrate olfactory sensory neurons to their targets in specific glomeruli of the olfactory bulb (OB). However, it is not clear how semaphorin-mediated guidance contributes to a systematic hierarchy of cues that govern the organization of this system. Because of the putative role that odorant receptor molecules such as P2 could play in establishing appropriate glomerular destinations for growing olfactory axons, we have also determined the spatial organization of P2 glomeruli in semaphorin 3A (Sema3A) mutant mice. First, in the postnatal OB of control and Sema3A(-/-) mice, we analysed the trajectories of olfactory axons that express the Sema3A receptor, neuropilin-1 (npn-1) and the positions of npn-1(+) glomeruli. Sema3A at the ventral OB midline guides npn-1(+) axons to targets in the lateral and medial OB. Absence of Sema3A permits many npn-1 axons to terminate aberrantly in the rostral and ventral OB. Second, in Sema3A(-/-) mice, many P2 axons are abnormally distributed throughout the ventral OB nerve layer and converge in atypical locations compared with littermate controls where P2 axons converge on stereotypically located lateral and medial glomeruli. In addition to their radically altered spatial distribution, P2 glomeruli in Sema3A(-/-) mice are significantly smaller and more numerous than in heterozygote littermates. These data show that Sema3A is an important repulsive olfactory guidance cue that establishes restricted npn-1(+) subcompartments in the olfactory bulb. Furthermore, Sema3A plays a key role in the convergence of axons expressing the odorant receptor P2 onto their appropriate targets.
机译:摘要信号量在脊椎动物嗅觉感觉神经元的轴突导向其嗅球(OB)特定肾小球的靶标中起着重要作用。但是,尚不清楚信号量介导的指导如何促进系统性的线索层次控制该系统的组织。由于假定的气味受体分子(例如P2)可以在建立合适的肾小球目的地以生长嗅觉轴突中发挥作用,因此我们还确定了信号量3A(Sema3A)突变小鼠中P2肾小球的空间组织。首先,在对照小鼠和Sema3A(-/-)小鼠的产后OB中,我们分析了表达Sema3A受体,神经纤毛蛋白1(npn-1)和npn-1(+)肾小球位置的嗅轴突的轨迹。腹部OB中线处的Sema3A将npn-1(+)轴突引导至外侧和内侧OB中的目标。 Sema3A的缺失使许多npn-1轴突在鼻尖和腹腔OB中异常终止。第二,在Sema3A(-/-)小鼠中,与同窝对照相比,许多P2轴突异常分布在整个腹OB神经层中,并且会聚在非典型位置,而P2轴突会聚在定型定位的外侧和内侧肾小球上。除了它们的空间分布发生根本性改变外,Sema3A(-/-)小鼠中的P2肾小球比杂合子同窝仔中的小得多且数量更多。这些数据表明Sema3A是重要的排斥性嗅觉指导线索,可在嗅球中建立受限的npn-1(+)子隔间。此外,Sema3A在表达气味受体P2的轴突汇聚到合适的靶标上起关键作用。

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