Suzuki J, Yoshida S, Chen Z L, Momota Y, Kato K, Hirata A, Shiosaka S
Department of Structural Cell Biology, Nara Institute of Science and Technology (NAIST), Japan.
Neurosci Res. 1995 Nov;23(4):345-51. doi: 10.1016/0168-0102(95)00960-2.
In our previous study, we found a novel gene encoding a serine protease termed neuropsin (NP) which exhibited activity-dependent gene expression or repression in the mouse hippocampus (Chen et al., 1995). In the present study, we examined the ontogeny of NP mRNA expression by in situ hybridization in the brain. Weak hybridization signals were also observed in the choroid plexus at this stage in addition to neuronal labeling. The signals continued to show this localization pattern until postnatal day 12. After embryonic day 18, the number of hybridization signals localized in the neurons of the forebrain limbic area were more predominant than those in the lower brainstem. NP gene expression spread in the anterior olfactory nucleus, hippocampus, septal nuclei, diagonal band of Broca, amygdala and limbic cortex successively from early embryonic to adult stage, though signals in the other brain regions were gradually decreased after birth. Thus, the widespread localization and two types of expression pattern, constitutive or transient, suggest that NP is a multiple functional protein involved in development, neuronal plasticity and cerebrospinal fluid production.
在我们之前的研究中,我们发现了一个编码丝氨酸蛋白酶的新基因,称为神经蛋白酶(NP),它在小鼠海马体中表现出活性依赖的基因表达或抑制(Chen等人,1995年)。在本研究中,我们通过原位杂交检查了大脑中NP mRNA表达的个体发生。在这个阶段,除了神经元标记外,在脉络丛中也观察到了微弱的杂交信号。这些信号在出生后第12天之前一直呈现这种定位模式。胚胎第18天之后,位于前脑边缘区神经元中的杂交信号数量比脑干下部的更为显著。从胚胎早期到成年期,NP基因表达依次在前嗅核、海马体、隔核、布罗卡斜带、杏仁核和边缘皮质中扩散,尽管出生后其他脑区的信号逐渐减少。因此,广泛的定位以及组成型或短暂型这两种表达模式表明,NP是一种参与发育、神经元可塑性和脑脊液生成的多功能蛋白质。