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首页> 外文期刊>Journal of cell biology >Telomere anchoring at the nuclear periphery requires the budding yeast Sad1-UNC-84 domain protein Mps3
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Telomere anchoring at the nuclear periphery requires the budding yeast Sad1-UNC-84 domain protein Mps3

机译:端粒锚定在核外围需要萌芽的酵母Sad1-UNC-84域蛋白Mps3

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摘要

Positioning of telomeres at the nuclear periphery can have dramatic effects on gene expression by establishment of heritable, transcriptionally repressive subdomains. However, little is known about the integral membrane proteins that mediate telomere tethering at the nuclear envelope. Here, we find a previously unrecognized function for the Saccharomyces cerevisiae Sad1-UNC-84 domain protein Mps3 in regulating telomere positioning in mitotic cells. Our data demonstrate that the nucleoplasmic N-terminal acidic domain of Mps3 is not essential for viability. However, this acidic domain is necessary and sufficient for telomere tethering during S phase and the silencing of reporter constructs integrated at telomeres. We show that this is caused by the role of the Mps3 acidic domain in binding and localization of the silent information regulator protein Sir4 to the nuclear periphery. Thus, Mps3 functions as an integral membrane anchor for telomeres and is a novel nuclear receptor for the Sir4 pathway of telomere tethering and gene inactivation.
机译:通过建立可遗传的,转录抑制性的亚结构域,将端粒定位在核外围可以对基因表达产生巨大影响。但是,关于介导端粒在核被膜上束缚的整合膜蛋白知之甚少。在这里,我们发现酿酒酵母Sad1-UNC-84域蛋白Mps3在调节有丝分裂细胞中端粒的位置上以前无法识别的功能。我们的数据表明,Mps3的核质N末端酸性域不是生存力所必需的。然而,该酸性结构域对于S期端粒的束缚和整合在端粒中的报告基因构建体的沉默是必要和充分的。我们显示这是由Mps3酸性域在沉默信息调节蛋白Sir4结合和定位到核外围中的作用引起的。因此,Mps3充当端粒的整体膜锚,并且是端粒束缚和基因失活的Sir4途径的新型核受体。

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