Ufano Sandra, Pablo M Evangelina, Calzada Arturo, del Rey Francisco, Vázquez de Aldana Carlos R
Instituto de Microbiología-Bioquímica, Departamento de Microbiología y Genética, CSIC/Universidad de Salamanca, Campus Miguel de Unamuno, 37007, Salamanca, Spain.
J Cell Sci. 2004 Feb 1;117(Pt 4):545-57. doi: 10.1242/jcs.00880. Epub 2004 Jan 6.
SWM1 was originally identified for its role in the late steps of the sporulation process, being required for spore wall assembly. This protein, recently identified as one of the core subunits of the anaphase-promoting complex (APC) is also required to complete cell separation in vegetative cells during growth at high temperature. Mutants lacking SWM1 show a thermosensitive growth defect that is suppressed by osmotic support in the culture medium. At the restrictive temperature, swm1 mutants are unable to complete separation, forming chains of cells that remain associated and, with prolonged incubation times, the stability of the cell wall is compromised, resulting in cell lysis. This separation defect is due to a reduction in expression of CTS1 (the gene encoding chitinase) and a group of genes involved in cell separation (such as ENG1,SCW11, DSE1 and DSE2). Interestingly, these genes are specifically regulated by the transcription factor Ace2p, suggesting that Swm1p is required for normal expression of Ace2p-dependent genes during growth at high temperatures. Although no defect in Ace2p localization can be observed at 28 degrees C, this transcription factor is unable to enter the nucleus of the daughter cell during growth at 38 degrees C. Under these growth conditions, swm1 cells undergo a delay in exit from mitosis, as determined by analysis of Clb2p degradation and Cdc28p-Clb2p kinase assays, and this could be the reason for the cytoplasmic localization of Ace2p.
SWM1最初因其在孢子形成过程后期步骤中的作用而被鉴定出来,它是孢子壁组装所必需的。这种蛋白质最近被确定为后期促进复合物(APC)的核心亚基之一,在高温生长期间的营养细胞中完成细胞分离也需要它。缺乏SWM1的突变体表现出温度敏感型生长缺陷,这种缺陷可被培养基中的渗透支持所抑制。在限制温度下,swm1突变体无法完成分离,形成相互连接的细胞链,并且随着孵育时间的延长,细胞壁的稳定性受到损害,导致细胞裂解。这种分离缺陷是由于CTS1(编码几丁质酶的基因)以及一组参与细胞分离的基因(如ENG1、SCW11、DSE1和DSE2)的表达降低所致。有趣的是,这些基因受转录因子Ace2p的特异性调控,这表明在高温生长期间,Swm1p是Ace2p依赖性基因正常表达所必需的。尽管在28摄氏度时未观察到Ace2p定位缺陷,但在38摄氏度生长期间,这种转录因子无法进入子细胞的细胞核。在这些生长条件下,通过分析Clb2p降解和Cdc28p-Clb2p激酶测定确定,swm1细胞在有丝分裂退出时出现延迟,这可能是Ace2p定位于细胞质的原因。