Okuzaki Daisuke, Satake Wataru, Hirata Aiko, Nojima Hiroshi
Department of Molecular Genetics, Research Institute for Microbial Diseases, Osaka University, 3-1 Yamadaoka, Suita, Osaka 565-0871, Japan.
J Cell Sci. 2003 Jul 1;116(Pt 13):2721-35. doi: 10.1242/jcs.00496. Epub 2003 May 20.
Using a meiosis-specific subtracted cDNA library of Schizosaccharomyces pombe, we identified meu14+ as a gene whose expression is upregulated during meiosis. Transcription of meu14+ is induced abruptly after the cell enters meiosis. Its transcription is dependent on the meiosis-specific transcription factor Mei4. In meu14Delta cells, the segregation and modification of the SPBs (spindle pole bodies) and microtubule elongation during meiosis II were aberrant. Meiotic meu14Delta cells consequently produced a high frequency of abnormal tetranucleate cells harboring aberrant forespore membranes and failed to produce asci. In wild-type cells harboring the integrated meu14+-gfp fusion gene, Meu14-GFP first appeared inside the nuclear region at prophase II, after which it accumulated beside the two SPBs at metaphase II. Thereafter, it formed two ring-shaped structures that surrounded the nucleus at early anaphase II. At post-anaphase II, it disappeared. Meu14-GFP appears to localize at the border of the forespore membrane that later develops into spore walls at the end of sporulation. This was confirmed by coexpressing Spo3-HA, a component of the forespore membrane, with Meu14-GFP. Taken together, we conclude that meu14+ is crucial in meiosis in that it participates in both the nuclear division during meiosis II and the accurate formation of the forespore membrane.
利用粟酒裂殖酵母减数分裂特异性消减cDNA文库,我们鉴定出meu14⁺是一个在减数分裂过程中表达上调的基因。细胞进入减数分裂后,meu14⁺的转录会突然被诱导。其转录依赖于减数分裂特异性转录因子Mei4。在meu14Δ细胞中,减数分裂II期间纺锤体极体(SPB)的分离和修饰以及微管伸长出现异常。因此,减数分裂的meu14Δ细胞产生了高频率的含有异常前孢子膜的异常四核细胞,并且未能产生子囊。在携带整合的meu14⁺-gfp融合基因的野生型细胞中,Meu14-GFP在减数分裂前期II首先出现在核区域内,之后在减数分裂中期II在两个SPB旁边积累。此后,在减数分裂后期II早期它形成两个围绕细胞核的环形结构。在减数分裂后期II之后,它消失了。Meu14-GFP似乎定位在前孢子膜的边界,该边界在孢子形成结束时后来发育成孢子壁。通过将前孢子膜成分Spo3-HA与Meu14-GFP共表达证实了这一点。综上所述,我们得出结论,meu14⁺在减数分裂中至关重要,因为它参与了减数分裂II期间的核分裂以及前孢子膜的精确形成。