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核因子一 x 的杂合性会影响小鼠海马依赖行为。

Heterozygosity for nuclear factor one x affects hippocampal-dependent behaviour in mice.

机构信息

The School of Biomedical Sciences, The University of Queensland, Brisbane, Australia.

出版信息

PLoS One. 2013 Jun 11;8(6):e65478. doi: 10.1371/journal.pone.0065478. Print 2013.

Abstract

Identification of the genes that regulate the development and subsequent functioning of the hippocampus is pivotal to understanding the role of this cortical structure in learning and memory. One group of genes that has been shown to be critical for the early development of the hippocampus is the Nuclear factor one (Nfi) family, which encodes four site-specific transcription factors, NFIA, NFIB, NFIC and NFIX. In mice lacking Nfia, Nfib or Nfix, aspects of early hippocampal development, including neurogenesis within the dentate gyrus, are delayed. However, due to the perinatal lethality of these mice, it is not clear whether this hippocampal phenotype persists to adulthood and affects hippocampal-dependent behaviour. To address this we examined the hippocampal phenotype of mice heterozygous for Nfix (Nfix (+/-)), which survive to adulthood. We found that Nfix (+/-) mice had reduced expression of NFIX throughout the brain, including the hippocampus, and that early hippocampal development in these mice was disrupted, producing a phenotype intermediate to that of wild-type mice and Nfix(-/-) mice. The abnormal hippocampal morphology of Nfix (+/-) mice persisted to adulthood, and these mice displayed a specific performance deficit in the Morris water maze learning and memory task. These findings demonstrate that the level of Nfix expression during development and within the adult is essential for the function of the hippocampus during learning and memory.

摘要

鉴定调控海马体发育和随后功能的基因对于理解该皮质结构在学习和记忆中的作用至关重要。一组已被证明对海马体早期发育至关重要的基因是核因子一(Nfi)家族,该家族编码四个特定部位的转录因子,NFIA、NFIB、NFIC 和 NFIX。在缺乏 Nfia、Nfib 或 Nfix 的小鼠中,包括齿状回内神经发生在内的早期海马体发育方面存在延迟。然而,由于这些小鼠在围产期具有致死性,因此尚不清楚这种海马体表型是否会持续到成年并影响海马体依赖性行为。为了解决这个问题,我们检查了杂合子 Nfix(Nfix(+/-))的小鼠的海马体表型,这些小鼠可以存活到成年。我们发现 Nfix(+/-)小鼠在整个大脑中包括海马体中的 NFIX 表达减少,并且这些小鼠的早期海马体发育受到干扰,产生介于野生型小鼠和 Nfix(-/-)小鼠之间的表型。Nfix(+/-)小鼠异常的海马体形态一直持续到成年,并且这些小鼠在 Morris 水迷宫学习和记忆任务中表现出特定的表现缺陷。这些发现表明,在发育过程中和成年期内 Nfix 表达水平对于学习和记忆过程中海马体的功能至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/371e/3679126/7aaf7112d1ee/pone.0065478.g001.jpg

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