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Rad4 Mainly Functions in Chk1-Mediated DNA Damage Checkpoint Pathway as a Scaffold Protein in the Fission Yeast Schizosaccharomyces pombe

机译:Rad4主要在Chk1介导的DNA损伤检查点途径中作为裂殖酵母裂殖酵母中的支架蛋白发挥作用。

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摘要

Rad4/Cut5 is a scaffold protein in the Chk1-mediated DNA damage checkpoint in S. pombe. However, whether it contains a robust ATR-activation domain (AAD) required for checkpoint signaling like its orthologs TopBP1 in humans and Dpb11 in budding yeast has been incompletely clear. To identify the putative AAD in Rad4, we carried out an extensive genetic screen looking for novel mutants with an enhanced sensitivity to replication stress or DNA damage in which the function of the AAD can be eliminated by the mutations. Two new mutations near the N-terminus were identified that caused significantly higher sensitivities to DNA damage or chronic replication stress than all previously reported mutants, suggesting that most of the checkpoint function of the protein is eliminated. However, these mutations did not affect the activation of Rad3 (ATR in humans) yet eliminated the scaffolding function of the protein required for the activation of Chk1. Several mutations were also identified in or near the recently reported AAD in the C-terminus of Rad4. However, all mutations in the C-terminus only slightly sensitized the cells to DNA damage. Interestingly, a mutant lacking the whole C-terminus was found resistant to DNA damage and replication stress almost like the wild type cells. Consistent with the resistance, all known Rad3 dependent phosphorylations of checkpoint proteins remained intact in the C-terminal deletion mutant, indicating that unlike that in Dpb11, the C-terminus of Rad4 does not contain a robust AAD. These results, together with those from the biochemical studies, show that Rad4 mainly functions as a scaffold protein in the Chk1, not the Cds1(CHK2 in humans), checkpoint pathway. It plays a minor role or is functionally redundant with an unknown factor in Rad3 activation.
机译:Rad4 / Cut5是在粟酒裂殖酵母中Chk1介导的DNA损伤检查点中的一种支架蛋白。然而,它是否包含一个关卡信号转导所必需的健壮的ATR激活域(AAD),如其在人类中的直系同源物TopBP1和​​在发芽酵母中的Dpb11,尚不完全清楚。为了鉴定Rad4中假定的AAD,我们进行了广泛的遗传筛选,寻找对复制压力或DNA损伤具有更高敏感性的新型突变体,其中突变可消除AAD的功能。在N端附近发现了两个新的突变,这些突变比以前报道的所有突变对DNA损伤或慢性复制压力的敏感性显着提高,这表明该蛋白的大多数检查点功能已被消除。但是,这些突变并不影响Rad3(人类中的ATR)的激活,却消除了激活Chk1所需的蛋白质的支架功能。在Rad4的C末端最近报道的AAD中或附近还发现了一些突变。但是,C末端的所有突变只会使细胞对DNA损伤稍微敏感。有趣的是,发现缺少整个C末端的突变体几乎像野生型细胞一样,对DNA损伤和复制压力具有抗性。与抗性一致,所有已知的Rad3依赖的检查点蛋白的磷酸化都在C端缺失突变体中保持完整,这表明与Dpb11不同,Rad4的C端不包含强健的AAD。这些结果以及来自生化研究的结果表明,Rad4主要在Chk1中充当支架蛋白,而不是Cds1(人中的CHK2),检查点途径。它在Rad3激活中起着次要作用或在功能上具有未知因素而具有冗余性。

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