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ADNP在神经元中细胞核/细胞质的差异定位表明其在神经元分化和维持中具有多种作用。

ADNP differential nucleus/cytoplasm localization in neurons suggests multiple roles in neuronal differentiation and maintenance.

作者信息

Mandel Shmuel, Spivak-Pohis Irit, Gozes Illana

机构信息

Department of Human Molecular Genetics and Biochemistry, Sackler Medical School, Tel Aviv University, Tel Aviv, 69978, Israel.

出版信息

J Mol Neurosci. 2008 Jun;35(2):127-41. doi: 10.1007/s12031-007-9013-y. Epub 2008 Feb 20.

Abstract

Complete deficiency in activity-dependent neuroprotective protein (ADNP) results in neural tube closure defects and death at gestation day 9 in mice. ADNP-deficient embryos exhibit dramatic increases in gene transcripts associated with lipid metabolism coupled to reduction in organogenesis/neurogenesis-related transcripts. In the pluripotent teratocarcinoma cell line P19, ADNP was shown to interact with specific chromatin regions in the neurodifferentiated state, which was associated with binding to the heterochromatin protein 1 alpha. In this study, using P19 cells as a differentiation model, we showed that ADNP expression and cytoplasm/nucleus distribution is unique in neuronal-differentiated cells compared to cardiovascular and nondifferentiated pluripotent cells. ADNP-like immunohistochemical localization to the neuronal cytoplasm and neurites was shown in this study not only in the cellular model but also in the brain cerebral cortex and olfactory bulb. Small hairpin RNA ADNP downregulation was used to further investigate ADNP involvement in p19 neurodifferentiation. An approximately 80% robust reduction in ADNP led to a substantial reduction in embryoid body formation and a significant reduction (approximately 50%) in neurite numbers. These results position ADNP in direct association with neuronal cell differentiation and maturation.

摘要

活性依赖的神经保护蛋白(ADNP)完全缺乏会导致小鼠在妊娠第9天时出现神经管闭合缺陷并死亡。ADNP缺陷型胚胎中,与脂质代谢相关的基因转录物显著增加,而与器官发生/神经发生相关的转录物则减少。在多能性畸胎瘤细胞系P19中,ADNP被证明在神经分化状态下与特定的染色质区域相互作用,这与它结合异染色质蛋白1α有关。在本研究中,我们以P19细胞作为分化模型,发现与心血管细胞和未分化的多能细胞相比,ADNP在神经元分化细胞中的表达及在细胞质/细胞核中的分布具有独特性。本研究不仅在细胞模型中,而且在大脑皮层和嗅球中均显示出ADNP样免疫组化定位于神经元细胞质和神经突。利用小发夹RNA下调ADNP,进一步研究ADNP在P19神经分化中的作用。ADNP表达水平大幅降低约80%,导致胚状体形成显著减少,神经突数量显著减少(约50%)。这些结果表明ADNP与神经元细胞的分化和成熟直接相关。

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