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首页> 外文期刊>PLoS Genetics >Semaphorin-1a prevents Drosophila olfactory projection neuron dendrites from mis-targeting into select antennal lobe regions
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Semaphorin-1a prevents Drosophila olfactory projection neuron dendrites from mis-targeting into select antennal lobe regions

机译:Semaphorin-1a防止果蝇嗅觉投射神经元树突误定位到选定的触角叶区域

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摘要

Elucidating how appropriate neurite patterns are generated in neurons of the olfactory system is crucial for comprehending the construction of the olfactory map. In the Drosophila olfactory system, projection neurons (PNs), primarily derived from four neural stem cells (called neuroblasts), populate their cell bodies surrounding to and distribute their dendrites in distinct but overlapping patterns within the primary olfactory center of the brain, the antennal lobe (AL). However, it remains unclear whether the same molecular mechanisms are employed to generate the appropriate dendritic patterns in discrete AL glomeruli among PNs produced from different neuroblasts. Here, by examining a previously explored transmembrane protein Semaphorin-1a (Sema-1a) which was proposed to globally control initial PN dendritic targeting along the dorsolateral-to-ventromedial axis of the AL, we discover a new role for Sema-1a in preventing dendrites of both uni-glomerular and poly-glomerular PNs from aberrant invasion into select AL regions and, intriguingly, this Sema-1a-deficient dendritic mis-targeting phenotype seems to associate with the origins of PNs from which they are derived. Further, ectopic expression of Sema-1a resulted in PN dendritic mis-projection from a select AL region into adjacent glomeruli, strengthening the idea that Sema-1a plays an essential role in preventing abnormal dendritic accumulation in select AL regions. Taken together, these results demonstrate that Sema-1a repulsion keeps dendrites of different types of PNs away from each other, enabling the same types of PN dendrites to be sorted into destined AL glomeruli and permitting for functional assembly of olfactory circuitry.
机译:阐明如何在嗅觉系统的神经元中产生适当的神经突图样对于理解嗅觉图的构建至关重要。在果蝇嗅觉系统中,主要来自四个神经干细胞(称为神经母细胞)的投射神经元(PNs)聚集在其周围的细胞体中,并以明显但重叠的模式将树突分布在大脑的主要嗅觉中心即触角内。叶(AL)。但是,尚不清楚是否使用相同的分子机制在由不同成神经细胞产生的PN之间的离散AL肾小球中产生适当的树突模式。在这里,通过检查先前探索过的跨膜蛋白Semaphorin-1a(Sema-1a),该蛋白被提议用于沿AL的背外侧到腹膜轴全局控制初始PN树突靶向,我们发现Sema-1a在预防单球和多球PNs的树突从异常侵入到选定的AL区域,并且有趣的是,这种Sema-1a缺陷的树突错误靶向表型似乎与PNs的起源有关。此外,Sema-1a的异位表达导致PN树突从选择的AL区到邻近的肾小球的投射错误,从而增强了Sema-1a在防止选择的AL区中异常树突积累中起重要作用的想法。综上所述,这些结果表明Sema-1a排斥力使不同类型PN的树枝状晶体彼此远离,从而使相同类型的PN树枝状晶体能够被分类到目的地的AL肾小球中,并允许嗅觉电路的功能性组装。

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