Instituto Gulbenkian de Ciência, Apartado 14, 2781-901 Oeiras, Portugal.
J Cell Sci. 2012 Jan 15;125(Pt 2):516-27. doi: 10.1242/jcs.096610. Epub 2012 Feb 13.
Mob1 is a component of both the mitotic exit network and Hippo pathway, being required for cytokinesis, control of cell proliferation and apoptosis. Cell division accuracy is crucial in maintaining cell ploidy and genomic stability and relies on the correct establishment of the cell division axis, which is under the control of the cell's environment and its intrinsic polarity. The ciliate Tetrahymena thermophila possesses a permanent anterior-posterior axis, left-right asymmetry and divides symmetrically. These unique features of Tetrahymena prompted us to investigate the role of Tetrahymena Mob1. Unexpectedly, we found that Mob1 accumulated in basal bodies at the posterior pole of the cell, and is the first molecular polarity marker so far described in Tetrahymena. In addition, Mob1 depletion caused the abnormal establishment of the cell division plane, providing clear evidence that Mob1 is important for its definition. Furthermore, cytokinesis was arrested and ciliogenesis delayed in Tetrahymena cells depleted of Mob1. This is the first evidence for an involvement of Mob1 in cilia biology. In conclusion, we show that Mob1 is an important cell polarity marker that is crucial for correct division plane placement, for cytokinesis completion and for normal cilia growth rates.
Mob1 是有丝分裂退出网络和 Hippo 通路的组成部分,对于胞质分裂、细胞增殖和凋亡的控制是必需的。细胞分裂的准确性对于维持细胞的ploidy 和基因组稳定性至关重要,这依赖于细胞分裂轴的正确建立,而细胞分裂轴受细胞环境及其内在极性的控制。纤毛虫 Tetrahymena thermophila 具有永久性的前后轴、左右不对称性和对称分裂。Tetrahymena 的这些独特特征促使我们研究 Tetrahymena Mob1 的作用。出乎意料的是,我们发现 Mob1 在细胞后极的基体中积累,是迄今为止在 Tetrahymena 中描述的第一个分子极性标记。此外,Mob1 的耗竭导致细胞分裂平面的异常建立,这为 Mob1 对其定义的重要性提供了明确的证据。此外,Mob1 耗竭的 Tetrahymena 细胞中的胞质分裂被阻断,纤毛生成被延迟。这是 Mob1 参与纤毛生物学的第一个证据。总之,我们表明 Mob1 是一个重要的细胞极性标记,对于正确的分裂平面定位、胞质分裂的完成和正常的纤毛生长速率至关重要。