Department of Biology, University of Copenhagen, DK-2200 Copenhagen, Denmark.
Proc Natl Acad Sci U S A. 2013 Nov 19;110(47):E4465-73. doi: 10.1073/pnas.1315581110. Epub 2013 Nov 4.
Our research addresses the relationship between subnuclear localization and gene expression in fission yeast. We observed the relocalization of a heterochromatic region, the mating-type region, from its natural location at the spindle-pole body to the immediate vicinity of the nucleolus. Relocalization occurred in response to a DNA rearrangement replacing a boundary element (IR-R) with a ribosomal DNA repeat (rDNA-R). Gene expression was strongly silenced in the relocalized mating-type region through mechanisms that differ from those operating in wild type. Also different from the wild-type situation, programmed recombination events failed to take place in the rDNA-R mutant. Increased silencing and perinucleolar localization depended on Reb1, a DNA-binding protein with cognate sites in the rDNA. Reb1 was recently shown to mediate long-range interchromosomal interactions in the nucleus through dimerization, providing a mechanism for the observed relocalization. Replacing the full rDNA repeat with Reb1-binding sites, and using mutants lacking the histone H3K9 methyltransferase Clr4, indicated that the relocalized region was silenced redundantly by heterochromatin and another mechanism, plausibly antisense transcription, achieving a high degree of repression in the rDNA-R strain.
我们的研究探讨了亚核定位与裂殖酵母基因表达之间的关系。我们观察到一个异染色质区域——交配型区域,从其自然位于纺锤体极体的位置重新定位到核仁附近。这种重新定位是响应 DNA 重排,将一个边界元件(IR-R)替换为核糖体 DNA 重复序列(rDNA-R)而发生的。在重新定位的交配型区域中,基因表达通过与野生型不同的机制被强烈沉默。与野生型情况不同的是,rDNA-R 突变体中未能发生程序性重组事件。增加的沉默和核周定位依赖于 Reb1,这是一种在 rDNA 中有同源位点的 DNA 结合蛋白。Reb1 最近被证明通过二聚化介导核内染色体间的长距离相互作用,为观察到的重新定位提供了一种机制。用 Reb1 结合位点替换完整的 rDNA 重复序列,并使用缺乏组蛋白 H3K9 甲基转移酶 Clr4 的突变体,表明重新定位的区域被异染色质和另一种机制(可能是反义转录)冗余沉默,在 rDNA-R 菌株中实现了高度抑制。