Karagiannis Jim, Bimbó Andrea, Rajagopalan Srividya, Liu Jianhua, Balasubramanian Mohan K
Laboratory of Cell Division, Temasek Life Sciences Laboratory, Singapore 117604, Singapore.
Mol Biol Cell. 2005 Jan;16(1):358-71. doi: 10.1091/mbc.e04-06-0502. Epub 2004 Nov 10.
Cytokinesis in fission yeast requires the function of an actomyosin-based contractile ring whose constriction is dependent on a signaling module termed the septation initiation network (SIN). In response to minor perturbation of the ring, the duration of SIN signaling is extended concurrently with a delay in nuclear cycle progression. These mechanisms require the conserved phosphatase Clp1p/Flp1p and facilitate the successful completion of cytokinesis, thereby increasing cellular viability. To isolate novel components of this cytokinesis monitoring system, we screened a genome-wide bank of protein kinase deletion mutants and identified Lsk1p, a nuclear-localized protein kinase. Similar to clp1Delta mutants, and in contrast to wild type, lsk1Delta cells are unable to maintain the integrity of the actomyosin ring upon treatment with low doses (0.3 microM) of latrunculin A. However, unlike clp1Delta mutants, lsk1Delta cells are competent to delay nuclear cycle progression after cytokinetic failure. In addition, lsk1Delta mutants suppress the lethal, multiseptate phenotype conferred by hyperactivation of the SIN, demonstrating that Lsk1p is a positive regulator of this module. In this report, we demonstrate that Lsk1p acts in parallel to Clp1p to promote actomyosin ring stability upon checkpoint activation. Our studies also establish that actomyosin ring maintenance and nuclear cycle delay in response to cytokinetic perturbation can be genetically resolved into independent pathways.
裂殖酵母中的胞质分裂需要基于肌动球蛋白的收缩环发挥作用,其收缩依赖于一个称为隔膜起始网络(SIN)的信号模块。响应环的轻微扰动时,SIN信号传导的持续时间会延长,同时核周期进程会延迟。这些机制需要保守的磷酸酶Clp1p/Flp1p,并有助于胞质分裂的成功完成,从而提高细胞活力。为了分离这个胞质分裂监测系统的新组分,我们筛选了全基因组的蛋白激酶缺失突变体库,并鉴定出Lsk1p,一种定位于细胞核的蛋白激酶。与clp1Δ突变体相似,但与野生型相反,lsk1Δ细胞在用低剂量(0.3微摩尔)的Latrunculin A处理后无法维持肌动球蛋白环的完整性。然而,与clp1Δ突变体不同,lsk1Δ细胞在胞质分裂失败后有能力延迟核周期进程。此外,lsk1Δ突变体抑制了由SIN过度激活导致的致死性、多隔膜表型,表明Lsk1p是该模块的正调控因子。在本报告中,我们证明Lsk1p与Clp1p平行发挥作用,在检查点激活时促进肌动球蛋白环的稳定性。我们的研究还表明,响应胞质分裂扰动时肌动球蛋白环的维持和核周期延迟在遗传上可分解为独立的途径。