Kommajosyula Naveen, Rhind Nicholas
Department of Biochemistry and Molecular Pharmacology, University of Massachusetts Medical School, Worcester, Massachusetts 01609, USA.
Cell Cycle. 2006 Nov 1;5(21):2495-500. doi: 10.4161/cc.5.21.3423. Epub 2006 Sep 19.
The S-phase DNA damage checkpoint slows replication when damage occurs during S phase. Cdc25, which activates Cdc2 by dephosphorylating tyrosine-15, has been shown to be a downstream target of the checkpoint in metazoans, but its role is not clear in fission yeast. The dephosphorylation of Cdc2 has been assumed not to play a role in S-phase regulation because cells replicate in the absence of Cdc25, demonstrating that tyrosine-15 phosphorylated dc2 is sufficient for S phase. However, it has been reported recently that Cdc25 is involved in the slowing of S phase in response to damage in fission yeast, suggesting a modulatory role for Cdc2 dephosphorylation in S phase. We have investigated the role of Cdc25 and the tyrosine phosphorylation of Cdc2 in the S-phase damage checkpoint, and our results show that Cdc2 phosphorylation is not a target of the checkpoint. The checkpoint was not compromised in a Cdc25 overexpressing strain, a strain carrying nonphosphorylatable form of Cdc2, or in a strain lacking Cdc25. Our results are consistent with a strictly Cdc2-Y15 phosphorylation-independent mechanism of the fission yeast S-phase DNA damage checkpoint.
S期DNA损伤检查点在S期发生损伤时会减缓复制。Cdc25通过使酪氨酸15去磷酸化来激活Cdc2,已被证明是后生动物中该检查点的下游靶点,但其在裂殖酵母中的作用尚不清楚。Cdc2的去磷酸化被认为在S期调控中不起作用,因为细胞在没有Cdc25的情况下仍能复制,这表明酪氨酸15磷酸化的Cdc2足以进行S期。然而,最近有报道称,Cdc25参与了裂殖酵母对损伤的S期减缓反应,这表明Cdc2去磷酸化在S期具有调节作用。我们研究了Cdc25和Cdc2的酪氨酸磷酸化在S期损伤检查点中的作用,结果表明Cdc2磷酸化不是该检查点的靶点。在过表达Cdc25的菌株、携带不可磷酸化形式Cdc2的菌株或缺乏Cdc25的菌株中,检查点均未受损。我们的结果与裂殖酵母S期DNA损伤检查点严格独立于Cdc2-Y15磷酸化的机制一致。