首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >The role of cytoplasmic dynein in the human brain developmental disease lissencephaly
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The role of cytoplasmic dynein in the human brain developmental disease lissencephaly

机译:细胞质动力蛋白在人脑发育性疾病性脑病中的作用

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Lissencephaly is a brain developmental disorder characterized by disorganization of the cortical regions resulting from defects in neuronal migration. Recent evidence has implicated the human LIS-1 gene in Miller-Dieker lissencephaly and isolated lissencephaly sequence. LIS-1 is homologous to the fungal genes NudF and PAC1, which are involved in cytoplamic dynein mediated nuclear transport, but it is also almost identical to a subunit of PAF acetylhydrolase, an enzyme which inactivates the lipid mediator platelet activating factor. Recent evidence from our laboratory has revealed that cytoplasmic dynein coimmunoprecipitates with LIS-1 in bovine brain cytosol, supporting a role in the dynein pathway in vertebrates. Overexpression of LIS-1 interferes with cell division, with noteworthy effects on chromosome attachment to the mitotic spindle and on the interaction of astral microtubules with the cell cortex. Other aspects of dynein function, such as the organization of the Golgi apparatus, are not affected. Together, these results suggest a role for LIS-1 in cytoplasmic dynein functions involving microtubule plus-ends. Furthermore, they suggest that mutations in LIS-1 may produce a lissencephalic phenotype either by interfering with the movement of neuronla nuclei within extending processes, or by interference with the division cycle of neuronal progenitor cells in the ventricular and subventricular zones of the developing
机译:小脑畸形是一种脑发育障碍,其特征是神经元迁移缺陷导致皮质区域紊乱。最近的证据表明,人LIS-1基因存在于Miller-Dieker轻脑和分离的轻脑中。 LIS-1与参与细胞质动力蛋白介导的核转运的真菌基因NudF和PAC1同源,但它也与PAF乙酰水解酶的亚基几乎相同,PAF乙酰水解酶是一种使脂质介导的血小板活化因子失活的酶。我们实验室的最新证据表明,牛脑细胞质中的细胞质动力蛋白与LIS-1发生共免疫沉淀,支持脊椎动物动力蛋白通路中的作用。 LIS-1的过表达干扰细胞分裂,对染色体附着在有丝分裂纺锤体上以及星状微管与细胞皮层的相互作用产生显着影响。动力蛋白的其他方面,例如高尔基体的组织,不受影响。在一起,这些结果表明LIS-1在涉及微管正端的细胞质动力蛋白功能中的作用。此外,他们认为,LIS-1中的突变可能通过干扰神经元核在扩展过程中的运动,或通过干扰发育中的心室和心室下区神经元祖细胞的分裂周期而产生lissencephalic表型。

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