al-Khodairy F, Enoch T, Hagan I M, Carr A M
MRC Cell Mutation Unit, Sussex University, UK.
J Cell Sci. 1995 Feb;108 ( Pt 2):475-86. doi: 10.1242/jcs.108.2.475.
Normal eukaryotic cells do not enter mitosis unless DNA is fully replicated and repaired. Controls called 'checkpoints', mediate cell cycle arrest in response to unreplicated or damaged DNA. Two independent Schizosaccharomyces pombe mutant screens, both of which aimed to isolate new elements involved in checkpoint controls, have identified alleles of the hus5+ gene that are abnormally sensitive to both inhibitors of DNA synthesis and to ionizing radiation. We have cloned and sequenced the hus5+ gene. It is a novel member of the E2 family of ubiquitin conjugating enzymes (UBCs). To understand the role of hus5+ in cell cycle control we have characterized the phenotypes of the hus5 mutants and the hus5 gene disruption. We find that, whilst the mutants are sensitive to inhibitors of DNA synthesis and to irradiation, this is not due to an inability to undergo mitotic arrest. Thus, the hus5+ gene product is not directly involved in checkpoint control. However, in common with a large class of previously characterized checkpoint genes, it is required for efficient recovery from DNA damage or S-phase arrest and manifests a rapid death phenotype in combination with a temperature sensitive S phase and late S/G2 phase cdc mutants. In addition, hus5 deletion mutants are severely impaired in growth and exhibit high levels of abortive mitoses, suggesting a role for hus5+ in chromosome segregation. We conclude that this novel UBC enzyme plays multiple roles and is virtually essential for cell proliferation.
正常的真核细胞在DNA未完全复制和修复之前不会进入有丝分裂。被称为“检查点”的调控机制可介导细胞周期停滞,以应对未复制或受损的DNA。两个独立的粟酒裂殖酵母突变体筛选实验,其目的均为分离出参与检查点调控的新元件,结果鉴定出hus5+基因的等位基因,这些等位基因对DNA合成抑制剂和电离辐射均异常敏感。我们已克隆并测序了hus5+基因。它是泛素缀合酶(UBCs)的E2家族中的一个新成员。为了了解hus5+在细胞周期调控中的作用,我们对hus5突变体和hus5基因缺失的表型进行了特征分析。我们发现,虽然这些突变体对DNA合成抑制剂和辐射敏感,但这并非由于无法经历有丝分裂停滞。因此,hus5+基因产物并不直接参与检查点调控。然而,与一大类先前已鉴定的检查点基因一样,它是从DNA损伤或S期停滞中有效恢复所必需的,并且与温度敏感的S期和S/G2期后期的cdc突变体结合时表现出快速死亡表型。此外,hus5缺失突变体的生长严重受损,并表现出高水平的流产有丝分裂,这表明hus5+在染色体分离中发挥作用。我们得出结论,这种新型的UBC酶发挥多种作用,对细胞增殖几乎至关重要。