Carlier-Grynkorn Frederique, Fachinetti Daniele, Tran Phong T
Institut Curie, PSL Université, Sorbonne Université, CNRS UMR144, Paris, France.
University of Pennsylvania, Department of Cell and Developmental Biology, Philadelphia, PA, United States.
MicroPubl Biol. 2022 Aug 6;2022. doi: 10.17912/micropub.biology.000623. eCollection 2022.
Human retinal pigment epithelium RPE-1 cells are immortalized diploid wild-type cells. RPE-1 is increasingly used for studies of spindle assembly dynamics and chromosome segregation. Here, we imaged living RPE-1 cells using the spinning disk confocal microscope and report their complete spindle assembly dynamic parameters. Live-cell experiments enabled ascribing precise timing of function of the kinesin-5 Eg5 and kinesin-14 HSET throughout different phases of mitosis. Eg5 functions at prophase and metaphase, to assemble and maintain spindle bipolarity, respectively. Eg5 inhibition results in spindle collapse during prophase and metaphase, resulting in monoastral/monopolar spindles. HSET functions throughout mitosis to maintain spindle length. HSET degradation results in shorter spindles through all phases of mitosis. Double-inhibition of Eg5 and HSET produces only monoastral/monopolar spindles, indicating that Eg5 and HSET may not be antagonistic in wild-type RPE-1 cells, contrary to previous studies using cancer cells. In the context of spindle assembly, our results highlight potential important differences between RPE-1 and other cancer-derived cell lines.
人视网膜色素上皮RPE-1细胞是永生化的二倍体野生型细胞。RPE-1越来越多地用于纺锤体组装动力学和染色体分离的研究。在这里,我们使用转盘共聚焦显微镜对活的RPE-1细胞进行成像,并报告它们完整的纺锤体组装动态参数。活细胞实验能够确定驱动蛋白-5 Eg5和驱动蛋白-14 HSET在有丝分裂不同阶段功能的精确时间。Eg5在前中期发挥作用,分别组装和维持纺锤体双极性。Eg5抑制导致前中期纺锤体崩溃,产生单星体/单极纺锤体。HSET在整个有丝分裂过程中发挥作用以维持纺锤体长度。HSET降解导致有丝分裂各阶段的纺锤体变短。对Eg5和HSET的双重抑制仅产生单星体/单极纺锤体,这表明与之前使用癌细胞的研究相反,在野生型RPE-1细胞中Eg5和HSET可能不是拮抗的。在纺锤体组装的背景下,我们的结果突出了RPE-1与其他癌症来源细胞系之间潜在的重要差异。