Craig R, Norbury C
Imperial Cancer Research Fund, Molecular Oncology Laboratory, University of Oxford Institute of Molecular Medicine, John Radcliffe Hospital, Oxford OX3 9DS, UK.
J Cell Sci. 1998 Dec 18;111 ( Pt 24):3609-19. doi: 10.1242/jcs.111.24.3609.
Entry into mitosis is normally blocked in eukaryotic cells that have not completed replicative DNA synthesis; this 'S-M' checkpoint control is fundamental to the maintenance of genomic integrity. Mutants of the fission yeast Schizosaccharomyces pombe defective in the S-M checkpoint fail to arrest the cell cycle when DNA replication is inhibited and hence attempt mitosis and cell division with unreplicated chromosomes, resulting in the 'cut' phenotype. In an attempt to identify conserved molecules involved in the S-M checkpoint we have screened a regulatable murine cDNA library in S. pombe and have identified cDNAs that induce the cut phenotype in cells arrested in S phase by hydroxyurea. One such cDNA encodes a novel protein with multiple calmodulin-binding motifs that, in addition to its effects on the S-M checkpoint, perturbed mitotic spindle functions, although spindle pole duplication was apparently normal. Both aspects of the phenotype induced by this cDNA product, which we term Sha1 (for spindle and hydroxyurea checkpoint abnormal), were suppressed by simultaneous overexpression of calmodulin. Sha1 is structurally related to the product of the Drosophila gene abnormal spindle (asp). These data suggest that calmodulin-binding protein(s) are important in the co-ordination of mitotic spindle functions with mitotic entry in fission yeast, and probably also in multicellular eukaryotes.
在尚未完成复制性DNA合成的真核细胞中,进入有丝分裂通常会被阻断;这种“S-M”检查点控制对于维持基因组完整性至关重要。在S-M检查点存在缺陷的裂殖酵母粟酒裂殖酵母突变体,当DNA复制受到抑制时无法阻止细胞周期,因此会尝试在染色体未复制的情况下进行有丝分裂和细胞分裂,从而产生“切割”表型。为了鉴定参与S-M检查点的保守分子,我们在粟酒裂殖酵母中筛选了一个可调控的小鼠cDNA文库,并鉴定出了一些cDNA,这些cDNA能在被羟基脲阻滞在S期的细胞中诱导出切割表型。其中一个这样的cDNA编码一种具有多个钙调蛋白结合基序的新型蛋白质,该蛋白质除了对S-M检查点有影响外,还会扰乱有丝分裂纺锤体功能,尽管纺锤极复制显然正常。我们将这种cDNA产物诱导的表型的两个方面称为Sha1(纺锤体和羟基脲检查点异常),钙调蛋白的同时过表达可抑制这两个方面。Sha1在结构上与果蝇基因异常纺锤体(asp)的产物相关。这些数据表明,钙调蛋白结合蛋白在裂殖酵母中,可能在多细胞真核生物中,对于有丝分裂纺锤体功能与有丝分裂进入的协调中很重要。