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Mms19 促进果蝇神经干细胞中纺锤体微管的组装。

Mms19 promotes spindle microtubule assembly in Drosophila neural stem cells.

机构信息

Cell Biology, University of Bern, Berne, Switzerland.

Graduate School for Cellular and Biomedical Sciences, University of Bern, Berne, Switzerland.

出版信息

PLoS Genet. 2020 Nov 19;16(11):e1008913. doi: 10.1371/journal.pgen.1008913. eCollection 2020 Nov.

Abstract

Mitotic divisions depend on the timely assembly and proper orientation of the mitotic spindle. Malfunctioning of these processes can considerably delay mitosis, thereby compromising tissue growth and homeostasis, and leading to chromosomal instability. Loss of functional Mms19 drastically affects the growth and development of mitotic tissues in Drosophila larvae and we now demonstrate that Mms19 is an important factor that promotes spindle and astral microtubule (MT) growth, and MT stability and bundling. Mms19 function is needed for the coordination of mitotic events and for the rapid progression through mitosis that is characteristic of neural stem cells. Surprisingly, Mms19 performs its mitotic activities through two different pathways. By stimulating the mitotic kinase cascade, it triggers the localization of the MT regulatory complex TACC/Msps (Transforming Acidic Coiled Coil/Minispindles, the homolog of human ch-TOG) to the centrosome. This activity of Mms19 can be rescued by stimulating the mitotic kinase cascade. However, other aspects of the Mms19 phenotypes cannot be rescued in this way, pointing to an additional mechanism of Mms19 action. We provide evidence that Mms19 binds directly to MTs and that this stimulates MT stability and bundling.

摘要

有丝分裂分裂依赖于有丝分裂纺锤体的及时组装和正确定向。这些过程的故障会大大延迟有丝分裂,从而损害组织生长和内稳态,并导致染色体不稳定。功能性 Mms19 的丧失会严重影响果蝇幼虫有丝分裂组织的生长和发育,我们现在证明 Mms19 是促进纺锤体和星体微管(MT)生长以及 MT 稳定性和束集的重要因素。Mms19 功能对于协调有丝分裂事件和快速通过有丝分裂是必需的,这是神经干细胞的特征。令人惊讶的是,Mms19 通过两种不同的途径发挥其有丝分裂活性。通过刺激有丝分裂激酶级联反应,它触发 MT 调节复合物 TACC/Msps(转化酸性卷曲螺旋/微管)向中心体的定位。这种 Mms19 的活性可以通过刺激有丝分裂激酶级联反应来挽救。然而,Mms19 表型的其他方面不能以这种方式挽救,这指向 Mms19 作用的另一种机制。我们提供了证据表明 Mms19 直接结合到 MT 上,这刺激了 MT 的稳定性和束集。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94aa/7714366/f423a62f8b46/pgen.1008913.g001.jpg

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