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S100 蛋白在斑马鱼发育过程中的嗅器和侧线系统中的起始和动态表达。

Onset and dynamic expression of S100 proteins in the olfactory organ and the lateral line system in zebrafish development.

机构信息

Department of Biological, Chemical and Physical Sciences, Illinois Institute of Technology, Chicago, IL 60616, USA.

出版信息

Brain Res. 2011 Apr 6;1383:120-7. doi: 10.1016/j.brainres.2011.01.087. Epub 2011 Jan 31.

DOI:10.1016/j.brainres.2011.01.087
PMID:21284940
Abstract

In the zebrafish olfactory epithelium, three morphologically distinct olfactory neurons express different marker proteins. We utilize this feature to access developmental dynamics of one of the neuron types, the crypt cells, to determine whether they are differentiated at a stage similar to other olfactory neurons. Immunohistochemical studies using an S100 antibody that specifically recognizes crypt cells showed that S100-positive cells appear in olfactory rosettes as early as at 2day postfertilization (dpf). However, some of the rosettes did not have any S100-positive cells until 4 dpf. The number of S100-positive cells in individual rosettes increased steadily over the next 3days before it decreased significantly. There were 7.8 S100-positive cells per rosettes on average in larvae at 7 dpf. The number reduced to 2.2 at 9 dpf. A recovery to a pre-reduction level was detected in 12 dpf larvae. We also observed S100-positive cells in neuromasts of the lateral line system in 2 dpf larvae, suggesting that the crypt cells and sensory cells in the neuromasts have similar onsets of differentiation. Our data have provided a time line of differentiation of crypt cells in development of the olfactory system and demonstrated that this type of cell is differentiated at a stage similar to ciliated and microvillous olfactory neurons. A nonlinear growth trajectory of the crypt cell population in the first nine days of zebrafish development implicates a possible functional significance of crypt cells in early life stages of zebrafish.

摘要

在斑马鱼嗅上皮中,三种形态上不同的嗅神经元表达不同的标记蛋白。我们利用这一特征来研究一种神经元类型——嗅鞘细胞的发育动态,以确定它们是否在类似于其他嗅神经元的阶段分化。使用一种特异性识别嗅鞘细胞的 S100 抗体的免疫组织化学研究表明,S100 阳性细胞早在受精后 2 天(dpf)就出现在嗅球中。然而,直到 4 dpf 才有一些嗅球没有任何 S100 阳性细胞。在接下来的 3 天里,单个嗅球中 S100 阳性细胞的数量稳步增加,然后显著减少。在 7 dpf 的幼虫中,每个嗅球平均有 7.8 个 S100 阳性细胞。这个数量在 9 dpf 时减少到 2.2。在 12 dpf 的幼虫中,检测到数量恢复到减少前的水平。我们还观察到 2 dpf 幼虫的侧线系统神经丘中有 S100 阳性细胞,表明嗅鞘细胞和神经丘中的感觉细胞具有相似的分化起始。我们的数据提供了嗅鞘细胞在嗅觉系统发育过程中分化的时间线,并表明这种类型的细胞在类似于纤毛和微绒毛嗅神经元的阶段分化。在斑马鱼发育的前 9 天,嗅鞘细胞群体的非线性生长轨迹暗示了嗅鞘细胞在早期斑马鱼生活阶段可能具有功能意义。

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