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Fine-tuning of actin dynamics by the HSPB8-BAG3 chaperone complex facilitates cytokinesis and contributes to its impact on cell division

机译:HSPB8-BAG3伴侣复合物对肌动蛋白动力学的微调有助于胞质分裂,并有助于其对细胞分裂的影响

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The small heat shock protein HSPB8 and its co-chaperone BAG3 are proposed to regulate cytoskeletal proteostasis in response to mechanical signaling in muscle cells. Here, we show that in dividing cells, the HSPB8-BAG3 complex is instrumental to the accurate disassembly of the actin-based contractile ring during cytokinesis, a process required to allow abscission of daughter cells. Silencing of HSPB8 markedly decreased the mitotic levels of BAG3 in HeLa cells, supporting its crucial role in BAG3 mitotic functions. Cells depleted of HSPB8 were delayed in cytokinesis, remained connected via a disorganized intercellular bridge, and exhibited increased incidence of nuclear abnormalities that result from failed cytokinesis (i.e., bi- and multi-nucleation). Such phenotypes were associated with abnormal accumulation of F-actin at the intercellular bridge of daughter cells at telophase. Remarkably, the actin sequestering drug latrunculin A, like the inhibitor of branched actin polymerization CK666, normalized F-actin during cytokinesis and restored proper cell division in HSPB8-depleted cells, implicating deregulated actin dynamics as a cause of abscission failure. Moreover, this HSPB8-dependent phenotype could be corrected by rapamycin, an autophagy-promoting drug, whereas it was mimicked by drugs impairing lysosomal function. Together, the results further support a role for the HSPB8-BAG3 chaperone complex in quality control of actin-based structure dynamics that are put under high tension, notably during cell cytokinesis. They expand a so-far under-appreciated connection between selective autophagy and cellular morphodynamics that guide cell division.
机译:提出了小的热激蛋白HSPB8及其伴侣蛋白BAG3响应于肌肉细胞中的机械信号而调节细胞骨架蛋白稳态。在这里,我们表明,在分裂细胞中,HSPB8-BAG3复合物有助于胞质分裂过程中基于肌动蛋白的收缩环的准确拆卸,这是允许子代细胞脱落的过程。 HSPB8的沉默显着降低了HeLa细胞中BAG3的有丝分裂水平,支持其在BAG3有丝分裂功能中的关键作用。耗尽HSPB8的细胞的胞质分裂被延迟,通过无序的细胞间桥保持连接,并显示由胞质分裂失败(即双核和多核)导致的核异常发生率增加。此类表型与F-肌动蛋白在末期子细胞的细胞间桥处异常蓄积有关。值得注意的是,螯合肌动蛋白拉特朗库林A像分支肌动蛋白聚合CK666的抑制剂一样,在胞质分裂过程中使F-肌动蛋白正常化,并在HSPB8耗尽的细胞中恢复了正常的细胞分裂,暗示肌动蛋白的动力学失调是脱落失败的原因。此外,可以通过雷帕霉素(一种自噬促进药物)纠正这种HSPB8依赖性表型,而通过溶酶体功能受损的药物来模仿它。总之,这些结果进一步支持了HSPB8-BAG3分子伴侣复合物在基于肌动蛋白的结构动力学的质量控制中的作用,该结构动力学处于高张力下,特别是在细胞胞质分裂过程中。它们扩展了选择性自噬与指导细胞分裂的细胞形态动力学之间迄今未被充分认识的联系。

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