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免疫球蛋白超家族成员并调节……中的神经突发育

The Immunoglobulin Superfamily Members and Regulate Neurite Development in .

作者信息

Tucker Dana K, Adams Chloe S, Prasad Gauri, Ackley Brian D

机构信息

The School of Natural Sciences, University of Central Missouri, Warrensburg, MO 64093, USA.

Department of Molecular Biosciences, University of Kansas, 5004 Haworth Hall, 1200 Sunnyside Ave, Lawrence, KS 66045, USA.

出版信息

J Dev Biol. 2022 Jan 9;10(1):3. doi: 10.3390/jdb10010003.

Abstract

Neurons form elaborate networks by guiding axons and dendrites to appropriate destinations. Neurites require information about the relative body axes during the initial projection from the cell body, and failure to receive or interpret those cues correctly can result in outgrowth errors. We identified a mutation in the Ig superfamily member in a screen for animals with anterior/posterior (A/P) axon guidance defects. We found that and its cognate Ig family member appear to function in a linear genetic pathway to control the outgrowth of GABAergic axons. We determined that this pathway works in parallel to Wnt signaling. Specifically, mutations in or selectively affected the embryonically derived Dorsal D-type (DD) GABAergic neurons. We found no evidence that these mutations affected the Ventral D-type neurons (VD) that form later, during the first larval stage. In addition, mutations in or could result in the DD neurons forming multiple processes, becoming bipolar, rather than the expected pseudounipolar morphology. Given SYG-2's essential function in synaptogenesis of the hermaphrodite-specific neurons (HSNs), we also examined DD neuron synapses in mutants. We found mutants had a decreased number of synapses formed, but synaptic morphology was largely normal. These results provide further evidence that the GABAergic motorneurons use multiple guidance pathways during development.

摘要

神经元通过引导轴突和树突到达合适的目的地来形成复杂的网络。在从细胞体开始的初始投射过程中,神经突需要有关相对身体轴的信息,而未能正确接收或解读这些线索可能会导致生长错误。我们在一项针对具有前后(A/P)轴突导向缺陷动物的筛选中,鉴定出免疫球蛋白超家族成员中的一个突变。我们发现[具体基因名称1]及其同源免疫球蛋白家族成员[具体基因名称2]似乎在一条线性遗传途径中发挥作用,以控制GABA能轴突的生长。我们确定这条途径与Wnt信号传导并行起作用。具体而言,[具体基因名称1]或[具体基因名称2]中的突变选择性地影响胚胎期衍生的背侧D型(DD)GABA能神经元。我们没有发现证据表明这些突变会影响在第一幼虫阶段后期形成的腹侧D型神经元(VD)。此外,[具体基因名称1]或[具体基因名称2]中的突变可能导致DD神经元形成多个突起,变成双极形态,而不是预期的假单极形态。鉴于SYG - 2在雌雄同体特异性神经元(HSN)的突触形成中具有重要功能,我们还检查了[具体基因名称1]突变体中的DD神经元突触。我们发现[具体基因名称1]突变体形成的突触数量减少,但突触形态基本正常。这些结果进一步证明,GABA能运动神经元在发育过程中使用多种导向途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8fad/8788504/331cf8b5ad8e/jdb-10-00003-g001.jpg

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