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EPHRIN-A5 REGULATES INTER-MALE AGGRESSION IN MICE

机译:EPHRIN-A5调节小鼠的人间侵袭

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摘要

The Eph family of receptor tyrosine kinases play key roles in both the patterning of the developing nervous system and neural plasticity in the mature brain. To determine functions of ephrin-A5, a GPI-linked ligand to the Eph receptors, in animal behavior regulations, we examined effects of its inactivation on male mouse aggression. When tested in the resident-intruder paradigm for offensive aggression, ephrin-A5-mutant animals (ephrin-A5−/−) exhibited severe reduction in conspecific aggression compared to wild-type controls. On the contrary, defensive aggression in the form of target biting was higher in ephrin-A5−/− mice, indicating that the mutant mice are capable of attacking behavior. In addition, given the critical role of olfaction in aggressive behavior, we examined the ability of the ephrin-A5−/− mice to smell and found no differences between the mutant and control animals. Testosterone levels in the mutant mice were also found to be within the normal range. Taken together, our data reveal a new role of ephrin-A5 in the regulation of aggressive behavior in mice.
机译:受体酪氨酸激酶的Eph家族在发育中的神经系统的模式和成熟大脑的神经可塑性中都起着关键作用。为了确定ephrin-A5(一种与Eph受体的GPI连接配体)的功能,在动物行为规则中,我们研究了其失活对雄性小鼠侵袭的影响。当在居民-入侵者范式中进行进攻性攻击测试时,与野生型对照组相比,ephrin-A5突变动物(ephrin-A5 -/-)的同种攻击性显着降低。相反,在ephrin-A5 -/-小鼠中,目标咬合形式的防御性攻击较高,这表明突变小鼠具有攻击行为的能力。此外,鉴于嗅觉在攻击行为中的关键作用,我们研究了ephrin-A5 -/-小鼠嗅觉的能力,发现突变动物与对照动物之间没有差异。还发现突变小鼠中的睾丸激素水平在正常范围内。综上所述,我们的数据揭示了ephrin-A5在调节小鼠攻击行为中的新作用。

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