Jin Quan-Wen, Ray Samriddha, Choi Sung Hugh, McCollum Dannel
Department of Molecular Genetics and Microbiology, and Program in Cell Dynamics, University of Massachusetts Medical School, Worcester, MA 01605, USA.
Mol Biol Cell. 2007 Aug;18(8):2924-34. doi: 10.1091/mbc.e06-09-0853. Epub 2007 May 30.
The septation initiation network (SIN) and mitotic exit network (MEN) signaling pathways regulate cytokinesis and mitotic exit in the yeasts Schizosaccharomyces pombe, and Saccharomyces cerevisiae, respectively. One function of these pathways is to keep the Cdc14-family phosphatase, called Clp1 in S. pombe, from being sequestered and inhibited in the nucleolus. In S. pombe, the SIN and Clp1 act as part of a cytokinesis checkpoint that allows cells to cope with cytokinesis defects. The SIN promotes checkpoint function by 1) keeping Clp1 out of the nucleolus, 2) maintaining the cytokinetic apparatus, and 3) halting the cell cycle until cytokinesis is completed. In a screen for suppressors of the SIN mutant cytokinesis checkpoint defect, we identified a novel nucleolar protein called Dnt1 and other nucleolar proteins, including Rrn5 and Nuc1, which are known to be required for rDNA transcription. Dnt1 shows sequence homology to Net1/Cfi1, which encodes the nucleolar inhibitor of Cdc14 in budding yeast. Like Net1/Cfi1, Dnt1 is required for rDNA silencing and minichromosome maintenance, and both Dnt1 and Net1/Cfi1 negatively regulate the homologous SIN and MEN pathways. Unlike Net1/Cfi1, which regulates the MEN through the Cdc14 phosphatase, Dnt1 can inhibit SIN signaling independently of Clp1, suggesting a novel connection between the nucleolus and the SIN pathway.
隔膜起始网络(SIN)和有丝分裂退出网络(MEN)信号通路分别调控粟酒裂殖酵母和酿酒酵母中的胞质分裂和有丝分裂退出。这些通路的一个功能是防止Cdc14家族磷酸酶(在粟酒裂殖酵母中称为Clp1)在核仁中被隔离和抑制。在粟酒裂殖酵母中,SIN和Clp1作为胞质分裂检查点的一部分发挥作用,使细胞能够应对胞质分裂缺陷。SIN通过以下方式促进检查点功能:1)使Clp1不进入核仁;2)维持胞质分裂装置;3)在胞质分裂完成之前停止细胞周期。在筛选SIN突变体胞质分裂检查点缺陷的抑制子时,我们鉴定出一种名为Dnt1的新型核仁蛋白以及其他核仁蛋白,包括已知rDNA转录所需的Rrn5和Nuc1。Dnt1与Net1/Cfi1具有序列同源性,Net1/Cfi1编码芽殖酵母中Cdc14的核仁抑制剂。与Net1/Cfi1一样,Dnt1是rDNA沉默和微型染色体维持所必需的,并且Dnt1和Net1/Cfi1都对同源的SIN和MEN通路起负调控作用。与通过Cdc14磷酸酶调节MEN的Net1/Cfi1不同,Dnt1可以独立于Clp1抑制SIN信号传导,这表明核仁与SIN通路之间存在新的联系。