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斑马鱼触觉感觉轴突的直径在体内是动态变化的。

Caliber of zebrafish touch-sensory axons is dynamic in vivo.

作者信息

Ching Kaitlin, Sagasti Alvaro

机构信息

Department of Cell, Molecular, and Developmental Biology, University of California, Los Angeles, Los Angeles, California 90095, USA.

出版信息

bioRxiv. 2025 Jan 24:2024.12.04.626901. doi: 10.1101/2024.12.04.626901.

Abstract

Cell shape is crucial to cell function, particularly in neurons. The cross-sectional diameter, also known as caliber, of axons and dendrites is an important parameter of neuron shape, best appreciated for its influence on the speed of action potential propagation. Many studies of axon caliber focus on cell-wide regulation and assume that caliber is static. Here, we have characterized local variation and dynamics of axon caliber in vivo using the peripheral axons of zebrafish touch-sensing neurons at embryonic stages, prior to sex determination. To obtain absolute measurements of caliber in vivo, we paired sparse membrane labeling with super-resolution microscopy of neurons in live fish. We observed that axon segments had varicose or "pearled" morphologies, and thus vary in caliber along their length, consistent with reports from mammalian systems. Sister axon segments originating from the most proximal branch point in the axon arbor had average calibers that were uncorrelated with each other. Axon caliber also tapered across the branch point. Varicosities and caliber, overall, were dynamic on the timescale of minutes, and dynamicity changed over the course of development. By measuring the caliber of axons adjacent to dividing epithelial cells, we found that skin cell division is one aspect of the cellular microenvironment that may drive local differences and dynamics in axon caliber. Our findings support the possibility that spatial and temporal variation in axon caliber could significantly influence neuronal physiology.

摘要

细胞形状对细胞功能至关重要,在神经元中尤为如此。轴突和树突的横截面直径,也称为管径,是神经元形状的一个重要参数,其对动作电位传播速度的影响最为显著。许多关于轴突管径的研究都集中在全细胞调节上,并假设管径是静态的。在这里,我们利用斑马鱼胚胎期触觉神经元的外周轴突,在性别决定之前,对体内轴突管径的局部变化和动态进行了表征。为了在体内获得管径的绝对测量值,我们将稀疏的膜标记与活鱼神经元的超分辨率显微镜相结合。我们观察到轴突段具有静脉曲张或“珍珠状”形态,因此其管径沿长度方向变化,这与哺乳动物系统的报道一致。源自轴突树突最近端分支点的姐妹轴突段的平均管径彼此不相关。轴突管径在分支点处也逐渐变细。总体而言,静脉曲张和管径在几分钟的时间尺度上是动态的,并且动态性在发育过程中发生变化。通过测量与分裂上皮细胞相邻的轴突管径,我们发现皮肤细胞分裂是细胞微环境的一个方面,可能驱动轴突管径的局部差异和动态变化。我们的研究结果支持轴突管径的时空变化可能显著影响神经元生理学的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba5e/11771242/7f3a19328c9e/nihpp-2024.12.04.626901v2-f0001.jpg

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