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Interaction Between the MEC1-Dependent DNA Synthesis Checkpoint and G1 Cyclin Function in Saccharomyces cerevisiae

机译:MEC1依赖性DNA合成检查点与G1细胞周期蛋白功能在酿酒酵母中的相互作用

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摘要

The completion of DNA synthesis in yeast is monitored by a checkpoint that requires MEC1 and RAD53. Here we show that deletion of the Saccharomyces cerevisiae G1 cyclins CLN1 and CLN2 suppressed the essential requirement for MEC1 function. Wild-type levels of CLN1 and CLN2, or overexpression of CLN1, CLN2, or CLB5, but not CLN3, killed mec1 strains. We identified RNR1, which encodes a subunit of ribonucleotide reductase, as a high-copy suppressor of the lethality of mec1 GAL1-CLN1. Northern analysis demonstrated that RNR1 expression is reduced by CLN1 or CLN2 overexpression. Because limiting RNR1 expression would be expected to decrease dNTP pools, CLN1 and CLN2 may cause lethality in mec1 strains by causing initiation of DNA replication with inadequate dNTPs. In contrast to mec1 mutants, MEC1 strains with low dNTPs would be able to delay S phase and thereby remain viable. We propose that the essential function for MEC1 may be the same as its checkpoint function during hydroxyurea treatment, namely, to slow S phase when nucleotides are limiting. In a cln1 cln2 background, a prolonged period of expression of genes turned on at the G1-S border, such as RNR1, has been observed. Thus deletion of CLN1 and CLN2 could function similarly to overexpression of RNR1 in suppressing mec1 lethality.
机译:通过需要MEC1和RAD53的检查点监测酵母中的DNA合成的完成。在这里,我们表明酿酒酵母CEREVISIAE G1微型CLN1和CLN2的缺失抑制了MEC1功能的基本要求。 ClN1和ClN2的野生型水平,或ClN1,ClN2或Clb5的过表达,但不是ClN3杀死MEC1菌株。我们鉴定了RNR1,其编码核糖核苷酸还原酶的亚基,作为MEC1 GAL1-CLN1的致死性的高拷贝抑制剂。 Northern分析表明RNR1表达通过CLN1或CLN2过表达减少。因为预期限制RNR1表达会降低DNTP池,所以通过使DNA复制与DNTP不足,CLN1和CLN2可以引起MEC1菌株中的致死性。与MEC1突变体相反,具有低DNTPS的MEC1菌株能够延迟S相,从而保持可行性。我们建议MEC1的基本功能可以与其在羟基脲处理期间的检查点函数相同,即核苷酸限制时缓慢的阶段。在CLN1CLN2背景中,已经观察到在G1-S边界处导致的基因的长时间,例如RNR1。因此,ClN1和ClN2的缺失可以类似地起到RNR1在抑制MEC1致命性时的过表达。

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