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首页> 外文期刊>PLoS Genetics >Recruitment to the Nuclear Periphery Can Alter Expression of Genes in Human Cells
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Recruitment to the Nuclear Periphery Can Alter Expression of Genes in Human Cells

机译:招聘核外围可以改变人类细胞中基因的表达

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摘要

The spatial organisation of the genome in the nucleus has a role in the regulation of gene expression. In vertebrates, chromosomal regions with low gene-density are located close to the nuclear periphery. Correlations have also been made between the transcriptional state of some genes and their location near the nuclear periphery. However, a crucial issue is whether this level of nuclear organisation directly affects gene function, rather than merely reflecting it. To directly investigate whether proximity to the nuclear periphery can influence gene expression in mammalian cells, here we relocate specific human chromosomes to the nuclear periphery by tethering them to a protein of the inner nuclear membrane. We show that this can reversibly suppress the expression of some endogenous human genes located near the tethering sites, and even genes further away. However, the expression of many other genes is not detectably reduced and we show that location at the nuclear periphery is not incompatible with active transcription. The dampening of gene expression around the nuclear periphery is dependent on the activity of histone deacetylases. Our data show that the radial position within the nucleus can influence the expression of some, but not all, genes. This is compatible with the suggestion that re-localisation of genes relative to the peripheral zone of the nucleus could be used by metazoans to modulate the expression of selected genes during development and differentiation.
机译:核中基因组的空间组织在基因表达的调节中起作用。在脊椎动物中,具有低基因密度的染色体区域位于核外围附近。还已经在某些基因的转录状态与其在核外围附近的位置之间建立了相关性。但是,一个关键问题是这种核组织水平是否直接影响基因功能,而不是仅仅反映它。为了直接研究与核外围的邻近是否会影响哺乳动物细胞中的基因表达,在这里我们通过将特定的人类染色体束缚到核内膜蛋白上,从而将特定的人类染色体重新定位到核外围。我们表明,这可以可逆地抑制位于束缚位点附近的某些内源性人类基因的表达,甚至更远的基因也可以。但是,许多其他基因的表达没有被检测到降低,并且我们表明核外围的位置与活性转录不相容。核周边周围基因表达的减弱取决于组蛋白脱乙酰基酶的活性。我们的数据表明,核内的径向位置会影响某些而非全部基因的表达。这与以下建议相吻合:后生动物可以利用基因相对于细胞核外围区的重新定位来调节发育和分化过程中所选基因的表达。

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