Department of Molecular Genetics, University of Toronto, Toronto M5S 1A8, Canada.
Dev Cell. 2012 Nov 13;23(5):1059-71. doi: 10.1016/j.devcel.2012.10.005. Epub 2012 Nov 1.
Gametes are among the most highly specialized cells produced during development. Although gametogenesis culminates in transcriptional quiescence in plants and animals, regulatory mechanisms controlling this are unknown. Here, we confirm that gamete differentiation in the single-celled yeast Saccharomyces cerevisiae is accompanied by global transcriptional shutoff following the completion of meiosis. We show that Jhd2, a highly conserved JARID1-family histone H3K4 demethylase, activates protein-coding gene transcription in opposition to this programmed transcriptional shutoff, sustaining the period of productive transcription during spore differentiation. Moreover, using genome-wide nucleosome, H3K4me, and transcript mapping experiments, we demonstrate that JHD2 globally represses intergenic noncoding transcription during this period. The widespread transcriptional defects of JHD2 mutants are associated with precocious differentiation and the production of stress-sensitive spores, demonstrating that Jhd2 regulation of the global postmeiotic transcriptional program is critical for the production of healthy meiotic progeny.
配子是发育过程中产生的高度特化的细胞之一。尽管配子发生在植物和动物中最终导致转录沉默,但控制这种沉默的调节机制尚不清楚。在这里,我们证实单细胞酵母酿酒酵母中的配子分化伴随着减数分裂完成后的全局转录关闭。我们表明,高度保守的 JARID1 家族组蛋白 H3K4 去甲基酶 Jhd2 与这种程序性转录关闭相反,激活蛋白编码基因转录,在孢子分化过程中维持有生产力的转录期。此外,通过全基因组核小体、H3K4me 和转录图谱实验,我们证明 JHD2 在这段时间内全局抑制基因间非编码转录。JHD2 突变体的广泛转录缺陷与早熟分化和产生应激敏感孢子有关,表明 Jhd2 对全局减数分裂后转录程序的调节对于产生健康的减数分裂后代至关重要。