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酿酒酵母的G2/M期检验点基因:在DNA复制和/或修复中发挥作用的进一步证据

G2/M checkpoint genes of Saccharomyces cerevisiae: further evidence for roles in DNA replication and/or repair.

作者信息

Lydall D, Weinert T

机构信息

Department of Molecular and Cellular Biology, University of Arizona, Tucson 85721, USA.

出版信息

Mol Gen Genet. 1997 Nov;256(6):638-51. doi: 10.1007/s004380050612.

Abstract

We have cloned, sequenced and disrupted the checkpoint genes RAD17, RAD24 and MEC3 of Saccharomyces cerevisiae. Mec3p shows no strong similarity to other proteins currently in the database. Rad17p is similar to Rec1 from Ustilago maydis, a 3' to 5' DNA exonuclease/checkpoint protein, and the checkpoint protein Rad1p from Schizosaccharomyces pombe (as we previously reported). Rad24p shows sequence similarity to replication factor C (RFC) subunits, and the S. pombe Rad17p checkpoint protein, suggesting it has a role in DNA replication and/or repair. This hypothesis is supported by our genetic experiments which show that overexpression of RAD24 strongly reduces the growth rate of yeast strains that are defective in the DNA replication/repair proteins Rfc1p (cdc44), DNA pol alpha (cdc17) and DNA pol delta (cdc2) but has much weaker effects on cdc6, cdc9, cdc15 and CDC4 strains. The idea that RAD24 overexpression induces DNA damage, perhaps by interfering with replication/repair complexes, is further supported by our observation that RAD24 overexpression increases mitotic chromosome recombination in CDC4 strains. Although RAD17, RAD24 and MEC3 are not required for cell cycle arrest when S phase is inhibited by hydroxyurea (HU), they do contribute to the viability of yeast cells grown in the presence of HU, possibly because they are required for the repair of HU-induced DNA damage. In addition, all three are required for the rapid death of cdc13 rad9 mutants. All our data are consistent with models in which RAD17, RAD24 and MEC3 are coordinately required for the activity of one or more DNA repair pathways that link DNA damage to cell cycle arrest.

摘要

我们已经克隆、测序并破坏了酿酒酵母的检查点基因RAD17、RAD24和MEC3。Mec3p与数据库中目前的其他蛋白质没有很强的相似性。Rad17p与玉米黑粉菌的Rec1相似,Rec1是一种3'到5'的DNA外切核酸酶/检查点蛋白,也与裂殖酵母的检查点蛋白Rad1p相似(正如我们之前报道的那样)。Rad24p与复制因子C(RFC)亚基以及裂殖酵母的Rad17p检查点蛋白具有序列相似性,这表明它在DNA复制和/或修复中发挥作用。我们的遗传学实验支持了这一假设,实验表明RAD24的过表达会显著降低在DNA复制/修复蛋白Rfc1p(cdc44)、DNA聚合酶α(cdc17)和DNA聚合酶δ(cdc2)中存在缺陷的酵母菌株的生长速率,但对cdc6、cdc9、cdc15和CDC4菌株的影响要小得多。RAD24过表达可能通过干扰复制/修复复合物诱导DNA损伤这一观点,进一步得到了我们的观察结果的支持,即RAD24过表达会增加CDC4菌株中的有丝分裂染色体重组。尽管当用羟基脲(HU)抑制S期时,细胞周期停滞并不需要RAD17、RAD24和MEC3,但它们确实有助于在HU存在下生长的酵母细胞的活力,这可能是因为它们是修复HU诱导的DNA损伤所必需的。此外,这三者都是cdc13 rad9突变体快速死亡所必需的。我们所有的数据都与这样的模型一致,即RAD17、RAD24和MEC3是一种或多种将DNA损伤与细胞周期停滞联系起来的DNA修复途径的活性所共同需要的。

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