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缝隙蛋白和 Robo-2 调节嗅球腹侧区域嗅感觉神经元轴突子集的融合。

Slits and Robo-2 regulate the coalescence of subsets of olfactory sensory neuron axons within the ventral region of the olfactory bulb.

机构信息

Montreal Neurological Institute, Centre for Neuronal Survival, 3801 University, Montréal, Québec, Canada H3A 2B4.

出版信息

Dev Biol. 2012 Nov 15;371(2):269-79. doi: 10.1016/j.ydbio.2012.08.028. Epub 2012 Sep 7.

Abstract

Olfactory sensory neurons (OSNs) project their axons to second-order neurons in the olfactory bulb (OB) to form a precise glomerular map and these stereotypic connections are crucial for accurate odorant information processing by animals. To form these connections, olfactory sensory neuron (OSN) axons respond to axon guidance molecules that direct their growth and coalescence. We have previously implicated the axon guidance receptor Robo-2 in the accurate coalescence of OSN axons within the dorsal region of the OB (Cho et al., 2011). Herein, we have examined whether Robo-2 and its ligands, the Slits, contribute to the formation of an accurate glomerular map within more ventral regions of the OB. We have ablated expression of Robo-2 in OSNs and assessed the targeting accuracy of axons expressing either the P2 or MOR28 olfactory receptors, which innervate two different regions of the ventral OB. We show that P2-positive axons, which express Robo-2, coalesce into glomeruli more ventrally and form additional glomeruli in the OB of robo-2(lox/lox);OMP-Cre mice. We also demonstrate that Robo-2-mediated targeting of P2 axons along the dorsoventral axis of the OB is controlled by Slit-1 and Slit-3 expression. Interestingly, although MOR28-positive OSNs only express low levels of Robo-2, a reduced number of MOR28-positive glomeruli is observed in the OB of robo-2(lox/lox);OMP-Cre mice. Taken together, our results demonstrate that Slits and Robo-2 are required for the formation of an accurate glomerular map in the ventral region of the OB.

摘要

嗅觉感觉神经元(OSNs)将其轴突投射到嗅球(OB)中的二级神经元,形成精确的神经球图谱,这些刻板的连接对于动物准确处理气味信息至关重要。为了形成这些连接,嗅觉感觉神经元(OSN)轴突会对指导其生长和融合的轴突导向分子做出反应。我们之前已经表明,轴突导向受体 Robo-2 在 OSN 轴突在 OB 的背侧区域内的精确融合中起作用(Cho 等人,2011 年)。在此,我们研究了 Robo-2 及其配体 Slit 是否有助于在 OB 的更腹侧区域形成精确的神经球图谱。我们已经在 OSNs 中消除了 Robo-2 的表达,并评估了表达 P2 或 MOR28 嗅觉受体的轴突的靶向准确性,这两种受体分别支配 OB 的两个不同区域。我们发现表达 Robo-2 的 P2 阳性轴突更向腹侧融合并形成额外的神经球。在 robo-2(lox/lox);OMP-Cre 小鼠的 OB 中。我们还证明,Robo-2 介导的 P2 轴突在 OB 的背腹轴上的靶向是由 Slit-1 和 Slit-3 表达控制的。有趣的是,尽管 MOR28 阳性 OSNs 仅表达低水平的 Robo-2,但在 robo-2(lox/lox);OMP-Cre 小鼠的 OB 中观察到 MOR28 阳性神经球的数量减少。总之,我们的结果表明,Slit 和 Robo-2 是形成 OB 腹侧区域精确神经球图谱所必需的。

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