Galindo Samantha E, Shin Grace Ji-Eun, Millard S Sean, Grueber Wesley B
Department of Genetics and Development, Vagelos College of Physicians and Surgeons, Columbia University, New York, NY 10032, USA.
Mortimer B. Zuckerman Mind Brain Behavior Institute, Columbia University, New York, NY 10027, USA.
bioRxiv. 2023 Mar 1:2023.03.01.530539. doi: 10.1101/2023.03.01.530539.
Axon and dendrite placement and connectivity is guided by a wide range of secreted and surface molecules in the developing nervous system. Nevertheless, the extraordinary complexity of connections in the brain requires that this repertoire be further diversified to precisely and uniquely regulate cell-cell interactions. One important mechanism for molecular diversification is alternative splicing. () undergoes cell type-specific alternative splicing to produce two isoform-specific homophilic binding proteins. Regulated alternative splicing of is important for dendrite and axon patterning, but how this translates to circuit wiring and animal behavior is not well understood. Here, we examined the role of cell-type specific expression of isoforms in regulating synaptic partner selection in the larval somatosensory system. We found that synaptic partners in the nociceptive circuit express different Dscam2 isoforms. Forcing synaptic partners to express a common isoform resulted in nociceptive axon patterning defects and attenuated nocifensive behaviors, indicating that a role for Dscam2 alternative splicing is to ensure that synaptic partners do not express matching isoforms. These results point to a model in which regulated alternative splicing of across populations of neurons restricts connectivity to specific partners and prevents inappropriate synaptic connections.
在发育中的神经系统中,轴突和树突的定位及连接受多种分泌分子和表面分子的引导。然而,大脑中连接的极度复杂性要求这一分子库进一步多样化,以精确且独特地调节细胞间相互作用。分子多样化的一个重要机制是可变剪接。()进行细胞类型特异性可变剪接,产生两种亚型特异性的同源结合蛋白。的受调控可变剪接对树突和轴突模式形成很重要,但这如何转化为神经回路布线和动物行为尚不清楚。在这里,我们研究了亚型的细胞类型特异性表达在调节幼虫体感系统中突触伙伴选择方面的作用。我们发现伤害性感受回路中的突触伙伴表达不同的Dscam2亚型。迫使突触伙伴表达共同的亚型会导致伤害性感受轴突模式形成缺陷并减弱伤害防御行为,这表明Dscam2可变剪接的作用是确保突触伙伴不表达匹配的亚型。这些结果指向一个模型,即神经元群体中受调控的可变剪接限制了与特定伙伴的连接,并防止不适当的突触连接。