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首页> 外文期刊>Journal of Cell Science >Accumulation of c-Myc and proteasomes at the nucleoli of cells containing elevated c-Myc protein levels
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Accumulation of c-Myc and proteasomes at the nucleoli of cells containing elevated c-Myc protein levels

机译:c-Myc和蛋白酶体在c-Myc蛋白水平升高的细胞核中的积累

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摘要

c-Myc is a predominately nuclear transcription factor that is a substrate for rapid turnover by the proteasome system. Cancer-related mutations in c-Myc lead to defects in its degradation and thereby contribute to the increase in its cellular level that is associated with the disease. Little is known about the mechanisms that target c-Myc to the proteasomes. By using a GFP fusion protein and live analysis we show that c-Myc shuttles between the nucleus and cytoplasm and thus it could be degraded in either compartment. Strikingly, at elevated levels of expression c-Myc accumulates at nucleoli in some cells, consistent with saturation of a nucleolus-associated degradation system in these cells. This idea is further supported by the observation that proteasome inhibitor treatment causes accumulation of c-Myc at the nucleoli of essentially all cells. Under these conditions c-Myc is relatively stably associated with the nucleolus, as would be expected if the nucleolus functions as a sequestration/degradation site for excess c-Myc. Furthermore, during elevated c-Myc expression or proteasome inhibition, nucleoli that are associated with c-Myc also accumulate proteasomes. c-Myc and proteasomes co-localise in intranucleolar regions distinct from the dense fibrillar component of the nucleolus. Based on these results we propose a model for c-Myc downregulation where c-Myc is sequestered at the nucleoli. Sequestration of c-Myc is accompanied by recruitment of proteasomes and may lead to subsequent degradation. [References: 47]
机译:c-Myc是主要的核转录因子,是蛋白酶体系统快速更新的底物。 c-Myc中与癌症相关的突变会导致其降解缺陷,从而导致其与疾病相关的细胞水平增加。关于将c-Myc靶向蛋白酶体的机制知之甚少。通过使用GFP融合蛋白和实时分析,我们显示c-Myc在细胞核和细胞质之间穿梭,因此可以在任一隔室中降解。令人惊讶的是,在某些细胞中,c-Myc在表达水平升高时在核仁处积累,这与这些细胞中与核仁相关的降解系统的饱和相一致。蛋白酶体抑制剂处理导致c-Myc在基本上所有细胞的核仁处积聚的观察结果进一步支持了该想法。在这些条件下,c-Myc与核仁相对稳定地缔合,如果核仁充当过量c-Myc的螯合/降解位点,这是可以预期的。此外,在升高的c-Myc表达或蛋白酶体抑制期间,与c-Myc相关的核仁也积累蛋白酶体。 c-Myc和蛋白酶体共定位在与核仁的密集纤维状成分不同的核内区域。基于这些结果,我们提出了c-Myc下调的模型,其中c-Myc被隔离在核仁处。螯合c-Myc伴随着蛋白酶体的募集,并可能导致随后的降解。 [参考:47]

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