Loss of Neuropilin2a/b or Sema3fa alters olfactory sensory axon dynamics and protoglomerular targeting.

IF 4 3区 生物学 Q1 DEVELOPMENTAL BIOLOGY
Ryan P Cheng, Puneet Dang, Alemji A Taku, Yoon Ji Moon, Vi Pham, Xiaohe Sun, Ethan Zhao, Jonathan A Raper
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引用次数: 4

Abstract

Background: Olfactory Sensory Neuron (OSN) axons project from the zebrafish olfactory epithelium to reproducible intermediate target locations in the olfactory bulb called protoglomeruli at early stages in development. Two classes of OSNs expressing either OMP or TRPC2 exclusively target distinct, complementary protoglomeruli. Using RNAseq, we identified axon guidance receptors nrp2a and nrp2b, and their ligand sema3fa, as potential guidance factors that are differentially expressed between these two classes of OSNs.

Methods: To investigate their role in OSN axon guidance, we assessed the protoglomerular targeting fidelity of OSNs labeled by OMP:RFP and TRPC2:Venus transgenes in nrp2a, nrp2b, or sema3fa mutants. We used double mutant and genetic interaction experiments to interrogate the relationship between the three genes. We used live time-lapse imaging to compare the dynamic behaviors of OSN growth cones during protoglomerular targeting in heterozygous and mutant larvae.

Results: The fidelity of protoglomerular targeting of TRPC2-class OSNs is degraded in nrp2a, nrp2b, or sema3fa mutants, as axons misproject into OMP-specific protoglomeruli and other ectopic locations in the bulb. These misprojections are further enhanced in nrp2a;nrp2b double mutants suggesting that nrp2s work at least partially in parallel in the same guidance process. Results from genetic interaction experiments are consistent with sema3fa acting in the same biological pathway as both nrp2a and nrp2b. Live time-lapse imaging was used to examine the dynamic behavior of TRPC2-class growth cones in nrp2a mutants compared to heterozygous siblings. Some TRPC2-class growth cones ectopically enter the dorsal-medial region of the bulb in both groups, but in fully mutant embryos, they are less likely to correct the error through retraction. The same result was observed when TRPC2-class growth cone behavior was compared between sema3fa heterozygous and sema3fa mutant larvae.

Conclusions: Our results suggest that nrp2a and nrp2b expressed in TRPC2-class OSNs help prevent their mixing with axon projections in OMP-specific protoglomeruli, and further, that sema3fa helps to exclude TRPC2-class axons by repulsion from the dorsal-medial bulb.

Abstract Image

Abstract Image

Abstract Image

Neuropilin2a/b或Sema3fa的缺失会改变嗅觉感觉轴突动力学和原肾小球靶向性。
背景:嗅觉感觉神经元(OSN)轴突在斑马鱼的早期发育阶段从嗅觉上皮向嗅球中可复制的中间目标位置(称为原肾小球)投射。两类表达OMP或TRPC2的osn只针对不同的、互补的原肾小球。利用RNAseq,我们发现轴突引导受体nrp2a和nrp2b及其配体sema3fa可能是这两类osn之间差异表达的潜在引导因子。方法:为了研究它们在OSN轴突引导中的作用,我们评估了由OMP:RFP和TRPC2:Venus转基因标记的OSN在nrp2a、nrp2b或sema3fa突变体中的原肾小球靶向保真度。我们用双突变和遗传互作实验来探究这三个基因之间的关系。我们使用实时延时成像技术比较了杂合和突变幼虫在原肾小球靶向过程中OSN生长锥的动态行为。结果:在nrp2a、nrp2b或sema3fa突变体中,trpc2类OSNs靶向原肾小球的保真度降低,因为轴突错误地投射到omp特异性原肾小球和球茎中的其他异位位置。这些错误投射在nrp2a和nrp2b双突变体中进一步增强,这表明nrp2s在相同的引导过程中至少部分平行地起作用。遗传互作实验结果表明,sema3fa与nrp2a和nrp2b在相同的生物学途径中起作用。实时延时成像技术被用于检测nrp2a突变体中trpc2类生长锥与杂合兄弟姐妹相比的动态行为。在两组中,一些trpc2类生长锥异位进入球茎的背内侧区域,但在完全突变的胚胎中,它们不太可能通过回缩来纠正错误。比较sema3fa杂合子和sema3fa突变体幼虫的trpc2级生长锥行为时,也观察到相同的结果。结论:我们的研究结果表明,在trpc2类OSNs中表达的nrp2a和nrp2b有助于阻止它们与omp特异性原肾小球中的轴突突起混合,此外,sema3fa通过背内侧球的排斥作用帮助排除trpc2类轴突。
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来源期刊
Neural Development
Neural Development 生物-发育生物学
CiteScore
6.60
自引率
0.00%
发文量
11
审稿时长
>12 weeks
期刊介绍: Neural Development is a peer-reviewed open access, online journal, which features studies that use molecular, cellular, physiological or behavioral methods to provide novel insights into the mechanisms that underlie the formation of the nervous system. Neural Development aims to discover how the nervous system arises and acquires the abilities to sense the world and control adaptive motor output. The field includes analysis of how progenitor cells form a nervous system during embryogenesis, and how the initially formed neural circuits are shaped by experience during early postnatal life. Some studies use well-established, genetically accessible model systems, but valuable insights are also obtained from less traditional models that provide behavioral or evolutionary insights.
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