Insertion of a neomycin selection cassette in the Amigo1 locus alters gene expression in the olfactory epithelium leading to region-specific defects in olfactory receptor neuron development

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-04-08 DOI:10.1002/dvg.23594
Reesha Raja, Emilie Dumontier, Alina Phen, Jean-François Cloutier
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Abstract

During development of the nervous system, neurons connect to one another in a precisely organized manner. Sensory systems provide a good example of this organization, whereby the composition of the outside world is represented in the brain by neuronal maps. Establishing correct patterns of neural circuitry is crucial, as inaccurate map formation can lead to severe disruptions in sensory processing. In rodents, olfactory stimuli modulate a wide variety of behaviors essential for survival. The formation of the olfactory glomerular map is dependent on molecular cues that guide olfactory receptor neuron axons to broad regions of the olfactory bulb and on cell adhesion molecules that promote axonal sorting into specific synaptic units in this structure. Here, we demonstrate that the cell adhesion molecule Amigo1 is expressed in a subpopulation of olfactory receptor neurons, and we investigate its role in the precise targeting of olfactory receptor neuron axons to the olfactory bulb using a genetic loss-of-function approach in mice. While ablation of Amigo1 did not lead to alterations in olfactory sensory neuron axonal targeting, our experiments revealed that the presence of a neomycin resistance selection cassette in the Amigo1 locus can lead to off-target effects that are not due to loss of Amigo1 expression, including unexpected altered gene expression in olfactory receptor neurons and reduced glomerular size in the ventral region of the olfactory bulb. Our results demonstrate that insertion of a neomycin selection cassette into the mouse genome can have specific deleterious effects on the development of the olfactory system and highlight the importance of removing antibiotic resistance cassettes from genetic loss-of-function mouse models when studying olfactory system development.

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在Amigo1基因座上插入新霉素选择盒会改变嗅上皮细胞的基因表达,导致嗅觉受体神经元发育的区域特异性缺陷
在神经系统的发育过程中,神经元以精确的组织方式相互连接。感觉系统就是这种组织方式的一个很好的例子,外部世界的构成通过神经元图谱在大脑中表现出来。建立正确的神经回路模式至关重要,因为不准确的图谱形成会导致感官处理过程受到严重破坏。在啮齿类动物中,嗅觉刺激会调节各种对生存至关重要的行为。嗅球图的形成依赖于引导嗅觉感受器神经元轴突到达嗅球广泛区域的分子线索,以及促进轴突分选到该结构中特定突触单元的细胞粘附分子。在这里,我们证明了细胞粘附分子Amigo1在嗅觉感受器神经元的一个亚群中表达,并利用小鼠基因功能缺失的方法研究了它在嗅觉感受器神经元轴突精确定向到嗅球中的作用。虽然Amigo1的消减不会导致嗅觉神经元轴突靶向的改变,但我们的实验发现,Amigo1基因座中新霉素抗性选择盒的存在会导致非Amigo1表达缺失引起的脱靶效应,包括嗅觉受体神经元中基因表达的意外改变和嗅球腹侧区域肾小球体积的缩小。我们的研究结果表明,在小鼠基因组中插入新霉素选择盒会对嗅觉系统的发育产生特定的有害影响,并强调了在研究嗅觉系统发育时从基因功能缺失小鼠模型中移除抗生素抗性盒的重要性。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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