Suppr超能文献

NRP1 和 NRP2 协同调节交感神经系统中的神经节生成、轴突导向和靶神经支配。

NRP1 and NRP2 cooperate to regulate gangliogenesis, axon guidance and target innervation in the sympathetic nervous system.

机构信息

UCL Institute of Ophthalmology, University College London, UK.

出版信息

Dev Biol. 2012 Sep 15;369(2):277-85. doi: 10.1016/j.ydbio.2012.06.026. Epub 2012 Jul 10.

Abstract

The sympathetic nervous system (SNS) arises from neural crest (NC) cells during embryonic development and innervates the internal organs of vertebrates to modulate their stress response. NRP1 and NRP2 are receptors for guidance cues of the class 3 semaphorin (SEMA) family and are expressed in partially overlapping patterns in sympathetic NC cells and their progeny. By comparing the phenotypes of mice lacking NRP1 or its ligand SEMA3A with mice lacking NRP1 in the sympathetic versus vascular endothelial cell lineages, we demonstrate that SEMA3A signalling through NRP1 has multiple cell-autonomous roles in SNS development. These roles include neuronal cell body positioning, neuronal aggregation and axon guidance, first during sympathetic chain assembly and then to regulate the innervation of the heart and aorta. Loss of NRP2 or its ligand SEMA3F impaired sympathetic gangliogenesis more mildly than loss of SEMA3A/NRP1 signalling, but caused ectopic neurite extension along the embryonic aorta. The analysis of compound mutants lacking SEMA3A and SEMA3F or NRP1 and NRP2 in the SNS demonstrated that both signalling pathways cooperate to organise the SNS. We further show that abnormal sympathetic development in mice lacking NRP1 in the sympathetic lineage has functional consequences, as it causes sinus bradycardia, similar to mice lacking SEMA3A.

摘要

交感神经系统 (SNS) 在胚胎发育过程中由神经嵴 (NC) 细胞产生,并支配脊椎动物的内部器官以调节其应激反应。NRP1 和 NRP2 是 3 类 semaphorin(SEMA)家族导向线索的受体,在交感 NC 细胞及其后代中以部分重叠的模式表达。通过比较缺乏 NRP1 或其配体 SEMA3A 的小鼠与缺乏交感神经与血管内皮细胞谱系中的 NRP1 的小鼠的表型,我们证明了 SEMA3A 通过 NRP1 信号转导在 SNS 发育中具有多个细胞自主作用。这些作用包括神经元细胞体定位、神经元聚集和轴突导向,首先在交感神经链组装期间,然后调节心脏和主动脉的神经支配。与 SEMA3A/NRP1 信号转导缺失相比,NRP2 或其配体 SEMA3F 的缺失对交感神经节发生的影响更为温和,但会导致沿着胚胎主动脉的异位神经突延伸。对 SNS 中缺乏 SEMA3A 和 SEMA3F 或 NRP1 和 NRP2 的复合突变体的分析表明,这两个信号通路共同组织 SNS。我们进一步表明,缺乏 NRP1 的交感神经谱系中的小鼠异常交感神经发育具有功能后果,因为它导致窦性心动过缓,类似于缺乏 SEMA3A 的小鼠。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c43b/3430865/e1a9725cc985/gr1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验