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信号素6A基因敲除小鼠在基于行为学的探索地形和运动学习方面均表现出异常。

Semaphorin 6A knockout mice display abnormalities across ethologically-based topographies of exploration and in motor learning.

作者信息

Håkansson Kerstin, Runker Annette E, O'Sullivan Gerard J, Mitchell Kevin J, Waddington John L, O'Tuathaigh Colm M P

机构信息

Molecular & Cellular Therapeutics, Royal College of Surgeons in Ireland, Dublin, Ireland.

Smurfit Institute of Genetics and Institute of Neuroscience, Trinity College Dublin, Dublin 2, Ireland.

出版信息

Neurosci Lett. 2017 Feb 22;641:70-76. doi: 10.1016/j.neulet.2017.01.043. Epub 2017 Jan 18.

Abstract

Semaphorins are secreted or membrane-bound proteins implicated in neurodevelopmental processes of axon guidance and cell migration. Exploratory behaviour and motor learning was examined ethologically in Semaphorin 6A (Sema6A) mutant mice. The ethogram of initial exploration in Sema6A knockout mice was characterised by increased rearing to wall with decreased sifting; over subsequent habituation, locomotion, sniffing and rearing to wall were increased, with reduced habituation of rearing seated. Rotarod analysis indicated delayed motor learning in Sema6A heterozygous mutants. Disruption to the axonal guidance and cell migration processes regulated by Sema6A is associated with topographically specific disruption to fundamental aspects of behaviour, namely the ethogram of initial exploration and subsequent habituation to the environment, and motor learning.

摘要

信号素是分泌型或膜结合蛋白,参与轴突导向和细胞迁移的神经发育过程。对信号素6A(Sema6A)突变小鼠的探索行为和运动学习进行了行为学研究。Sema6A基因敲除小鼠初始探索行为图谱的特征是靠墙直立增加而筛检减少;在随后的适应过程中,运动、嗅探和靠墙直立行为增加,而坐姿直立的适应性降低。转棒试验分析表明,Sema6A杂合突变体的运动学习延迟。由Sema6A调控的轴突导向和细胞迁移过程的破坏与行为基本方面的地形特异性破坏有关,即初始探索行为图谱和随后对环境的适应,以及运动学习。

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