Disease Mechanism Research Core, RIKEN Brain Science Institute, Wako, Saitama, 351-0198, Japan.
J Neurosci. 2011 Nov 23;31(47):17017-27. doi: 10.1523/JNEUROSCI.2815-11.2011.
Development of sensory neural circuits requires concurrent specification of neuron modality, position, and topographic projections. However, little is understood about how controls over these distinct parameters can unify in a single developmental sequence. To address this question, we have used the nociceptive class IV dendritic arborization neurons in the Drosophila larval body wall as an excellent model that allows precise spatiotemporal dissection of developmental-genetic control over sensory neuron positioning and wiring, and subsequent analysis of its functional significance for sensorimotor behavior. The class IV neurogenetic program is intrinsic to the anterior domain of the embryonic parasegment epithelium. Along the ventrolateral axis of this domain, nociceptive neuron induction requirements depend upon location. Near the ventral midline, both Hedgehog and Epithelial growth factor receptor signaling are required for class IV neurogenesis. In addition, close to the ventral midline, class IV neurogenesis is preceded by expression of the Iroquois factor Mirror that promotes local nociceptive neuron differentiation. Remarkably, Mirror is also required for the proper routing of class IV topographic axonal projections across the midline of the CNS. Manipulation of Mirror activity in class IV neurons retargeted axonal projections and caused concordant changes in larval nociceptive escape behavior. These findings indicate that convergent sensory neuron specification, local differentiation, and topographic wiring are mediated by Mirror, and they suggest an integrated paradigm for position-sensitive neural development.
感觉神经回路的发育需要神经元模式、位置和拓扑投射的同时指定。然而,对于如何在单个发育序列中统一控制这些不同的参数,我们知之甚少。为了解决这个问题,我们使用了果蝇幼虫体壁中的伤害性 IV 类树突分支神经元作为一个极好的模型,它允许对感觉神经元定位和布线的发育遗传控制进行精确的时空剖析,随后分析其对感觉运动行为的功能意义。IV 类神经发生程序是胚胎旁节上皮的前域所固有的。在该区域的腹侧外侧轴线上,伤害性神经元诱导要求取决于位置。在靠近腹中线的位置,Hedgehog 和上皮生长因子受体信号都需要 IV 类神经元发生。此外,在靠近腹中线的位置,Iroquois 因子 Mirror 的表达先于 IV 类神经元发生,促进局部伤害性神经元分化。值得注意的是,Mirror 也需要 IV 类拓扑轴突投射在中枢神经系统中线的正确路由。在 IV 类神经元中操纵 Mirror 的活性会重新定位轴突投射,并导致幼虫伤害性逃避行为的一致变化。这些发现表明,趋同的感觉神经元指定、局部分化和拓扑布线是由 Mirror 介导的,它们为位置敏感的神经发育提供了一个综合的范例。