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Cytoplasmic LEK1 is a regulator of microtubule function through its interaction with the LIS1 pathway

机译:细胞质LEK1通过与LIS1途径的相互作用来调节微管功能

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LIS1 and nuclear distribution gene E (NudE) are partner proteins in a conserved pathway regulating the function of dynein and micro-tubules. Here, we present data that cytoplasmic LEK1 (cytLEK1), a large protein containing a spectrin repeat and multiple leucine zippers, is a component of this pathway through its direct interaction with NudE, as determined by a yeast two-hybrid screen. We identified the binding domains in each molecule, and coimmuno-precipitation and colocalization studies confirmed the specificity of the interaction between cytLEK1 and NudE. Confocal deconvolu-tion analysis revealed that cytLEK1 exhibits colocalization with endogenous NudE and with the known NudE binding partners, LIS1 and dynein. By localizing the NudE-binding domain of cytLEK1 to a small domain within the molecule, we were able to disrupt cytLEK1 function by using a dominant negative approach in addition to LEK1 knockdown and, thus, examine the role of the cytLEK1-NudE interaction in cells. Consistent with a defect in the LIS1 pathway, disruption of cytLEK1 function resulted in alteration of microtubule organization and cellular shape. The microtubule network of cells became tightly focused around the nucleus and resulted in a rounded cell shape. Additionally, cells exhibited a severe inability to repolymerize their microtubule networks after nocodazole challenge. Taken together, our studies revealed that cytLEK1 is essential for cellular functions regulated by the LIS1 pathway.
机译:LIS1和核分布基因E(NudE)是保守蛋白中的配偶蛋白,可调节动力蛋白和微管的功能。在这里,我们提供的数据表明,胞质LEK1(cytLEK1)是一种包含血影蛋白重复序列​​和多个亮氨酸拉链的大蛋白,是通过与NudE直接相互作用而通过酵母双杂交筛选确定的该途径的组成部分。我们确定了每个分子中的结合结构域,并且共免疫沉淀和共定位研究证实了cytLEK1和NudE之间相互作用的特异性。共聚焦去卷积分析表明,cytLEK1与内源性NudE以及已知的NudE结合伴侣LIS1和dynein共同定位。通过将cytLEK1的NudE结合域定位于分子内的一个小域,我们能够通过使用除LEK1敲除外的显性负性方法破坏cytLEK1的功能,从而研究了cytLEK1-NudE相互作用在细胞中的作用。 。与LIS1途径的缺陷一致,cytLEK1功能的破坏导致微管组织和细胞形状的改变。细胞的微管网络紧紧围绕核,并形成圆形细胞形状。另外,在诺考达唑攻击后,细胞表现出严重无法再聚合其微管网络。综上所述,我们的研究表明cytLEK1对于LIS1途径调控的细胞功能至关重要。

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