Zolzaya Sunjidmaa, Ihara Dai, Erkhembaatar Munkhsoyol, Ochiai Shinsuke, Isa Ayaka, Nishibe Mariko, Bellier Jean-Pierre, Shimizu Takahiro, Kikkawa Satoshi, Nitta Ryo, Katsuyama Yu
Department of Anatomy, Division of Neuroanatomy, Shiga University of Medical Science, Otsu 520-2192, Japan.
Molecular Neuroscience Research Center, Shiga University of Medical Science, Otsu 520-2192, Japan.
J Dev Biol. 2025 Jan 21;13(1):3. doi: 10.3390/jdb13010003.
Human genome studies have suggested that strawberry notch homologue 1 () is crucial for normal brain development, with mutations potentially contributing to neurodevelopmental disorders. In a previous study, we observed significant developmental abnormalities in the neocortex of as early as one week after birth. In the present study, we conducted an extensive analysis of Sbno1 postnatal expression in the brain of C57BL/6 mice using a newly developed in-house polyclonal antibody against Sbno1. We found that Sbno1 is expressed in all neurons, with certain neuronal populations exhibiting distinct dynamic changes (both temporal and spatial) in expression level. These findings suggest that the neuronal expression of Sbno1 is developmentally regulated after birth. They also indicate that while Sbno1 may play a general role across all neurons, it may also serve more specialized functions in certain neuronal types and/or for certain cellular activities related to particular neuronal pathways.
人类基因组研究表明,草莓缺口同源物1(Sbno1)对正常大脑发育至关重要,其突变可能导致神经发育障碍。在先前的一项研究中,我们早在出生后一周就观察到Sbno1基因敲除小鼠新皮质出现明显的发育异常。在本研究中,我们使用新开发的针对Sbno1的内部多克隆抗体,对C57BL/6小鼠大脑中Sbno1的出生后表达进行了广泛分析。我们发现Sbno1在所有神经元中均有表达,某些神经元群体在表达水平上呈现出明显的动态变化(包括时间和空间上)。这些发现表明,Sbno1的神经元表达在出生后受到发育调控。它们还表明,虽然Sbno1可能在所有神经元中发挥普遍作用,但它也可能在某些神经元类型和/或与特定神经元通路相关的某些细胞活动中发挥更特殊的功能。