首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Sensorimotor functions in transgenic mice expressing the neurofilament/heavy-LacZ fusion protein on two genetic backgrounds.
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Sensorimotor functions in transgenic mice expressing the neurofilament/heavy-LacZ fusion protein on two genetic backgrounds.

机译:在两个遗传背景上表达神经丝/重LacZ融合蛋白的转基因小鼠中的感觉运动功能。

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摘要

NFH-LacZ transgenic mice are characterized by expression of a non-endogenous fusion protein between a truncated form of mouse NFH (neurofilament of heavy molecular weight) and the complete Escherichia coli beta-galactosidase protein. These transgenic mice were compared to their respective controls on two background strains (C3H and FVB) in several sensorimotor tests. NFH-LacZ mice were deficient in tests requiring balance and equilibrium in a manner generally independent of genetic background. In particular, NFH-LacZ mice fell more quickly than controls from two stationary beams and had fewer rears in an open-field. The transgenic mice were also impaired during the initial trials of sensorimotor learning on the rotorod.We conclude that despite the absence of overt signs of sensorimotor weakness in their home cage, the disruption of the NFH gene, causing neurofilament accumulations in the cell body and diminished axonal calibers of motoneurons, is sufficient to cause motor deficits that resemble the early stages of amyotrophic lateral sclerosis.
机译:NFH-LacZ转基因小鼠的特征是在截短形式的小鼠NFH(高分子量神经丝)和完整的大肠杆菌β-半乳糖苷酶蛋白之间表达非内源性融合蛋白。在几种感觉运动测试中,将这些转基因小鼠与两种背景菌株(C3H和FVB)的对照进行了比较。 NFH-LacZ小鼠的测试缺乏平衡性和平衡性,且通常与遗传背景无关。特别是,NFH-LacZ小鼠从两个固定光束中摔倒的速度比对照组更快,并且在旷野中的后部更少。转基因小鼠在旋翼上的感觉运动学习的初步试验中也受到了损害。我们的结论是,尽管在其笼中没有明显的感觉运动无力的迹象,但NFH基因的破坏导致细胞内神经丝的积累并减少了。运动神经元的轴突口径足以引起类似于肌萎缩性侧索硬化早期的运动缺陷。

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