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裂殖酵母减数分裂过程中wee1(+)表达的调控

Regulation of wee1(+) expression during meiosis in fission yeast.

作者信息

Murakami-Tonami Yuko, Ohtsuka Hokuto, Aiba Hirofumi, Murakami Hiroshi

机构信息

a Aichi Cancer Center Research Institute ; Division of Molecular Oncology ; Nagoya , Japan.

出版信息

Cell Cycle. 2014;13(18):2853-8. doi: 10.4161/15384101.2014.946807.

Abstract

In eukaryotes, the cyclin-dependent kinase Cdk1p (Cdc2p) plays a central role in entry into and progression through nuclear division during mitosis and meiosis. Cdk1p is activated during meiotic nuclear divisions by dephosphorylation of its tyrosine-15 residue. The phosphorylation status of this residue is largely determined by the Wee1p kinase and the Cdc25p phosphatase. In fission yeast, the forkhead-type transcription factor Mei4p is essential for entry into the first meiotic nuclear division. We recently identified cdc25(+) as an essential target of Mei4p in the control of entry into meiosis I. Here, we show that wee1(+) is another important target of Mei4p in the control of entry into meiosis I. Mei4p bound to the upstream region of wee1(+) in vivo and in vitro and inhibited expression of wee1(+), whereas Mei4p positively regulated expression of the adjacent pseudogene. Overexpression of Mei4p inhibited expression of wee1(+) and induced that of the pseudogene. Conversely, deletion of Mei4p did not decrease expression of wee1(+) but inhibited that of the pseudogene. In addition, deletion of Mei4p-binding regions delayed repression of wee1(+) expression as well as induction of expression of the pseudogene. These results suggest that repression of wee1(+) expression is primarily owing to Mei4p-mediated transcriptional interference.

摘要

在真核生物中,细胞周期蛋白依赖性激酶Cdk1p(Cdc2p)在有丝分裂和减数分裂期间进入核分裂并在其中进行进程中起着核心作用。Cdk1p在减数分裂核分裂期间通过其酪氨酸-15残基的去磷酸化而被激活。该残基的磷酸化状态在很大程度上由Wee1p激酶和Cdc25p磷酸酶决定。在裂殖酵母中,叉头型转录因子Mei4p对于进入第一次减数分裂核分裂至关重要。我们最近确定cdc25(+)是Mei4p在控制进入减数分裂I中的一个必需靶点。在此,我们表明wee1(+)是Mei4p在控制进入减数分裂I中的另一个重要靶点。Mei4p在体内和体外与wee1(+)的上游区域结合并抑制wee1(+)的表达,而Mei4p正向调节相邻假基因的表达。Mei4p的过表达抑制wee1(+)的表达并诱导假基因的表达。相反,Mei4p的缺失并没有降低wee1(+)的表达,但抑制了假基因的表达。此外,Mei4p结合区域的缺失延迟了wee1(+)表达的抑制以及假基因表达的诱导。这些结果表明wee1(+)表达的抑制主要是由于Mei4p介导的转录干扰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9fe3/4612672/c93bba0b8a7e/kccy-13-18-946807-g001.jpg

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