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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Behavioral and other phenotypes in a cytoplasmic Dynein light intermediate chain 1 mutant mouse.
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Behavioral and other phenotypes in a cytoplasmic Dynein light intermediate chain 1 mutant mouse.

机译:在细胞质动力蛋白轻中间链1突变小鼠中的行为和其他表型。

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摘要

The cytoplasmic dynein complex is fundamentally important to all eukaryotic cells for transporting a variety of essential cargoes along microtubules within the cell. This complex also plays more specialized roles in neurons. The complex consists of 11 types of protein that interact with each other and with external adaptors, regulators and cargoes. Despite the importance of the cytoplasmic dynein complex, we know comparatively little of the roles of each component protein, and in mammals few mutants exist that allow us to explore the effects of defects in dynein-controlled processes in the context of the whole organism. Here we have taken a genotype-driven approach in mouse (Mus musculus) to analyze the role of one subunit, the dynein light intermediate chain 1 (Dync1li1). We find that, surprisingly, an N235Y point mutation in this protein results in altered neuronal development, as shown from in vivo studies in the developing cortex, and analyses of electrophysiological function. Moreover, mutant mice display increased anxiety, thus linking dynein functions to a behavioral phenotype in mammals for the first time. These results demonstrate the important role that dynein-controlled processes play in the correct development and function of the mammalian nervous system.
机译:胞质动力蛋白复合物对于所有真核细胞沿细胞内的微管运输各种必需货物至关重要。这种复合物在神经元中也起着更特殊的作用。该复合物由11种蛋白质组成,它们相互之间以及与外部适配器,调节剂和货物的相互作用。尽管细胞质动力蛋白的重要性,我们对每种成分蛋白的作用了解得很少,在哺乳动物中,很少有突变体可以使我们在整个生物体中探索动力蛋白控制过程中缺陷的影响。在这里,我们采用了一种由基因型驱动的小鼠(Mus musculus)方法来分析一个亚基,达因轻质中间链1(Dync1li1)的作用。我们发现,令人惊讶的是,这种蛋白质的N235Y点突变导致神经元发育发生改变,如在发育中的皮层的体内研究和电生理功能分析所示。此外,突变小鼠表现出增加的焦虑,因此首次将动力蛋白的功能与哺乳动物的行为表型联系起来。这些结果证明了动力蛋白控制的过程在哺乳动物神经系统的正确发育和功能中所起的重要作用。

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