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Dynamic Interactions of Arabidopsis TEN1: Stabilizing Telomeres in Response to Heat Stress

机译:Arabidopsis Ten1的动态相互作用:响应热应激稳定端粒

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Telomeres are the essential nucleoprotein structures that provide a physical cap for the ends of linear chromosomes. The highly conserved CST (CTC1/STN1/TEN1) protein complex facilitates telomeric DNA replication and promotes telomere stability. Here we report three unexpected properties of Arabidopsis thaliana TEN1 that indicate it possesses functions distinct from other previously characterized telomere proteins. First, we show that telomeres in ten1 mutants are highly sensitive to thermal stress. Heat shock causes abrupt and dramatic loss of telomeric DNA in ten1 plants, likely via deletional recombination. Second, we show that AtTEN1 has the properties of a heat-shock induced molecular chaperone. At elevated temperature, AtTEN1 rapidly assembles into high molecular weight homo-oligomeric complexes that efficiently suppress heat-induced aggregation of model protein substrates in vitro. Finally, we report that AtTEN1 specifically protects CTC1 from heat-induced aggregation in vitro, and from heat-induced protein degradation and loss of telomere association in vivo. Collectively, these observations define Arabidopsis TEN1 as a highly dynamic protein that works in concert with CTC1 to preserve telomere integrity in response to environmental stress.
机译:端粒是基本核蛋白结构,其为线性染色体的末端提供物理帽。高度保守的CST(CTC1 / STN1 / TEN1)蛋白质复合物有助于端粒DNA复制并促进端粒稳定性。在这里,我们报告了拟南芥Thaliana Ten1的意外特性,表明它具有与其他以前特征的端粒蛋白不同的功能。首先,我们表明Ten1突变体中的端粒对热应力非常敏感。热休克可能通过删除重组导致Ten1植物中的端粒DNA突然和剧烈丧失。其次,我们表明Atten1具有热冲击诱导的分子伴侣的性质。在升高的温度下,Atten1迅速组装成高分子量的同源 - 低聚复合物,其在体外有效地抑制了模型蛋白质底物的热诱导的聚集。最后,我们报告说,Atten1特异性地保护CTC1免受体外热诱导的聚集体,以及在体内的热诱导的蛋白质降解和端粒关联的丧失。总的来说,这些观察结果将拟南芥121定义为高度动态的蛋白质,与CTC1一起工作,以响应环境压力而保存端粒完整性。

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    《The Plant Cell》 |2016年第9期|共13页
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  • 正文语种 eng
  • 中图分类 植物细胞学;
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