A cortical pool of LIN-5 (NuMA) controls cytokinetic furrow formation and cytokinesis completion.

IF 7.4 1区 生物学 Q1 CELL BIOLOGY
Kuheli Adhikary,Sukriti Kapoor,Sachin Kotak
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引用次数: 0

Abstract

In animal cells, cleavage furrow formation is controlled by localized activation of the GTPase RhoA at the equatorial membrane using cues transmitted from the spindle. Here, we explore the function of LIN-5, a well-studied protein known for its role in aster separation and spindle positioning in cleavage furrow formation. We show that the cortical pool of LIN-5, recruited by GPR-1/2 and important for cortical force generation, regulates cleavage furrow formation independently of its roles in aster separation and spindle positioning. Instead, our data suggest that enrichment of LIN-5/GPR-1/2 at the polar cortical region is essential to ensure the timely accumulation of contractile ring components-myosin II and Anillin at the equatorial cortex. We additionally define a late cytokinesis role of cortical LIN-5/GPR-1/2 in midbody stabilization and abscission. These results indicate that the cortical LIN-5/GPR-1/2 complex contributes to multiple aspects of cytokinesis independently of its roles in spindle positioning and elongation.
皮质LIN-5 (NuMA)池控制细胞动力学沟形成和细胞分裂完成。
在动物细胞中,卵裂沟的形成是由赤道膜上GTPase RhoA的局部激活控制的,该激活利用纺锤体传递的信号。在这里,我们探索了LIN-5的功能,LIN-5是一种被广泛研究的蛋白质,以其在卵裂沟形成中的aster分离和纺锤体定位中的作用而闻名。我们发现,由GPR-1/2募集的LIN-5皮质库对皮质力的产生很重要,它独立于在aster分离和纺锤体定位中的作用调节解理沟的形成。相反,我们的数据表明,LIN-5/GPR-1/2在极地皮质区的富集对于确保收缩环成分-肌球蛋白II和氨苄素在赤道皮质的及时积累至关重要。我们还定义了皮质LIN-5/GPR-1/2在中体稳定和脱落中的后期细胞分裂作用。这些结果表明,皮质LIN-5/GPR-1/2复合体参与细胞质分裂的多个方面,而不依赖于其在纺锤体定位和伸长中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Cell Biology
Journal of Cell Biology 生物-细胞生物学
CiteScore
12.60
自引率
2.60%
发文量
213
审稿时长
1 months
期刊介绍: The Journal of Cell Biology (JCB) is a comprehensive journal dedicated to publishing original discoveries across all realms of cell biology. We invite papers presenting novel cellular or molecular advancements in various domains of basic cell biology, along with applied cell biology research in diverse systems such as immunology, neurobiology, metabolism, virology, developmental biology, and plant biology. We enthusiastically welcome submissions showcasing significant findings of interest to cell biologists, irrespective of the experimental approach.
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