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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Behavioral characterization in a comprehensive mouse test battery reveals motor and sensory impairments in growth-associated protein-43 null mutant mice.
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Behavioral characterization in a comprehensive mouse test battery reveals motor and sensory impairments in growth-associated protein-43 null mutant mice.

机译:在全面的小鼠测试电池中的行为表征揭示了生长相关蛋白43空突变小鼠的运动和感觉障碍。

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摘要

The growth-associated protein (GAP)-43 is a major neuronal protein associated with axonal growth, neuronal plasticity and learning. The observation that only 5-10% of mice with a full GAP-43 gene deletion survive weaning suggests that basic neural functions are disturbed. Here we used a comprehensive test battery to characterise and quantify the motor and sensory function of surviving adult homozygous GAP-43 (-/-) mice as compared with GAP-43 (+/-) and wild-type animals. The test battery was comprised of motor, sensory, and reflex tests producing 25 measures of locomotion, as well as epicritic, auditory, olfactory and visual function. The analysis revealed significant impairments in muscle strength, limb coordination and balance in GAP-43 (-/-) mice. Furthermore, GAP-43 (-/-) animals were hyperactive and showed reduced anxiety as measured by open field and light dark tests. In sensory tests, GAP-43 (-/-) mice were tested for impaired tactile and labyrinthine function. Abnormal reflexes were found in the contact and vibrissa placing responses, and in the crossed extensor reflex. GAP-43 (+/-) animals showed only moderate abnormalities as compared with wild-type animals. We conclude that GAP-43 is necessary for the development and function of a variety of neuronal systems. The results also show that the comprehensive test battery used in the present study represents a sensitive approach to assess the functional integrity of ascending and descending pathways in genetically manipulated mice.
机译:生长相关蛋白(GAP)-43是与轴突生长,神经元可塑性和学习相关的主要神经元蛋白。仅有5-10%的具有完整GAP-43基因缺失的小鼠能够存活断奶的观察结果表明,基本的神经功能受到了干扰。在这里,我们使用了一个全面的测试电池来表征和量化与GAP-43(+/-)和野生型动物相比,存活的成年纯合GAP-43(-/-)小鼠的运动和感觉功能。测试电池由运动,感官和反射测试组成,产生25种运动,以及症状,听觉,嗅觉和视觉功能。分析显示,GAP-43(-/-)小鼠的肌肉力量,四肢协调和平衡明显受损。此外,GAP-43(-/-)动物活动过度,表现出减少的焦虑感,这是通过开阔地带和浅暗测试测得的。在感觉测试中,对GAP-43(-/-)小鼠的触觉和迷宫功能受损进行了测试。在接触和触须放置反应以及交叉伸肌反射中发现异常反射。与野生型动物相比,GAP-43(+/-)动物仅显示中度异常。我们得出结论,GAP-43对于多种神经系统的发育和功能是必需的。结果还表明,本研究中使用的综合测试电池代表了一种敏感的方法,可以评估转基因小鼠中上升和下降途径的功能完整性。

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