Department of Molecular and Cell Biology, University of California, Berkeley, Berkeley, CA 94720, USA.
Mol Biol Cell. 2012 Apr;23(7):1367-75. doi: 10.1091/mbc.E11-06-0547. Epub 2012 Feb 9.
The genome is nonrandomly organized within the nucleus, but it remains unclear how gene position affects gene expression. Silenced genes have frequently been found associated with the nuclear periphery, and the environment at the periphery is believed to be refractory to transcriptional activation. However, in budding yeast, several highly regulated classes of genes, including the GAL7-10-1 gene cluster, are known to translocate to the nuclear periphery concurrent with their activation. To investigate the role of gene positioning on GAL gene expression, we monitored the effects of mutations that disrupt the interaction between the GAL locus and the periphery or synthetically tethered the locus to the periphery. Localization to the nuclear periphery was found to dampen initial GAL gene induction and was required for rapid repression after gene inactivation, revealing a function for the nuclear periphery in repressing endogenous GAL gene expression. Our results do not support a gene-gating model in which GAL gene interaction with the nuclear pore ensures rapid gene expression, but instead they suggest that a repressive environment at the nuclear periphery establishes a negative feedback loop that enables the GAL locus to respond rapidly to changes in environmental conditions.
基因组在核内是非随机组织的,但基因位置如何影响基因表达仍不清楚。沉默基因经常与核周缘相关联,并且人们认为周缘环境不利于转录激活。然而,在芽殖酵母中,包括 GAL7-10-1 基因簇在内的几个高度调控的基因类群,在其激活时已知会转移到核周缘。为了研究基因定位对 GAL 基因表达的作用,我们监测了破坏 GAL 基因座与周缘相互作用或人工将基因座连接到周缘的突变的影响。发现定位于核周缘会抑制 GAL 基因的初始诱导,并在基因失活后迅速抑制基因表达,这表明核周缘在抑制内源性 GAL 基因表达方面具有功能。我们的结果不支持一种门控模型,即 GAL 基因与核孔的相互作用确保了快速的基因表达,而是表明核周缘的抑制环境建立了一个负反馈回路,使 GAL 基因座能够对环境条件的变化迅速做出反应。