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Rad3-Cds1介导减数分裂重组起始与DNA复制的偶联。Mei4依赖性转录作为减数分裂检查点的潜在靶点。

Rad3-Cds1 mediates coupling of initiation of meiotic recombination with DNA replication. Mei4-dependent transcription as a potential target of meiotic checkpoint.

作者信息

Ogino Keiko, Masai Hisao

机构信息

Genome Dynamics Project, Tokyo Metropolitan Institute of Medical Science, Tokyo 113-8613, Japan.

出版信息

J Biol Chem. 2006 Jan 20;281(3):1338-44. doi: 10.1074/jbc.M505767200. Epub 2005 Nov 14.

Abstract

Premeiotic S-phase and meiotic recombination are known to be strictly coupled in Saccharomyces cerevisiae. However, the checkpoint pathway regulating this coupling has been largely unknown. In fission yeast, Rad3 is known to play an essential role in coordination of DNA replication and cell division during both mitotic growth and meiosis. Here we have examined whether the Rad3 pathway also regulates the coupling of DNA synthesis and recombination. Inhibition of premeiotic S-phase with hydroxyurea completely abrogates the progression of meiosis, including the formation of DNA double-strand breaks (DSBs). DSB formation is restored in rad3 mutant even in the presence of hydroxyurea, although repair of DSBs does not take place or is significantly delayed, indicating that the subsequent recombination steps may be still inhibited. Examination of the roles of downstream checkpoint kinases reveals that Cds1, but not Chk1 or Mek1, is required for suppression of DSB in the presence of hydroxyurea. Transcriptional induction of some rec+ genes essential for DSB occurs at a normal timing and to a normal level in the absence of DNA synthesis in both the wild-type and cds1delta cells. On the other hand, the transcriptional induction of the mei4+ transcription factor and cdc25+ phosphatase, which is significantly suppressed by hydroxyurea in the wild-type cells, occurs almost to a normal level in cds1delta cells even in the presence of hydroxyurea. These results show that the Rad3-Cds1 checkpoint pathway coordinates initiation of meiotic recombination and meiotic cell divisions with premeiotic DNA synthesis. Because mei4+ is known to be required for DSB formation and cdc25+ is required for activation of meiotic cell divisions, we propose an intriguing possibility that the Rad3-Cds1 meiotic checkpoint pathway may target transcription of these factors.

摘要

已知在酿酒酵母中,减数分裂前的S期和减数分裂重组是严格偶联的。然而,调节这种偶联的检查点途径在很大程度上尚不清楚。在裂殖酵母中,已知Rad3在有丝分裂生长和减数分裂期间的DNA复制与细胞分裂协调中起着至关重要的作用。在这里,我们研究了Rad3途径是否也调节DNA合成与重组的偶联。用羟基脲抑制减数分裂前的S期完全消除了减数分裂的进程,包括DNA双链断裂(DSB)的形成。即使在存在羟基脲的情况下,rad3突变体中的DSB形成也能恢复,尽管DSB的修复不会发生或显著延迟,这表明随后的重组步骤可能仍受到抑制。对下游检查点激酶作用的研究表明,在存在羟基脲的情况下,抑制DSB需要Cds1,而不是Chk1或Mek1。在野生型和cds1δ细胞中,在没有DNA合成的情况下,一些对DSB至关重要的rec+基因的转录诱导在正常时间和正常水平发生。另一方面,在野生型细胞中被羟基脲显著抑制的mei4+转录因子和cdc25+磷酸酶的转录诱导,即使在存在羟基脲的情况下,在cds1δ细胞中也几乎达到正常水平。这些结果表明,Rad3-Cds1检查点途径将减数分裂重组的起始和减数分裂细胞分裂与减数分裂前的DNA合成协调起来。因为已知mei4+是DSB形成所必需的,而cdc25+是减数分裂细胞分裂激活所必需的,我们提出了一个有趣的可能性,即Rad3-Cds1减数分裂检查点途径可能靶向这些因子的转录。

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