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首页> 外文期刊>Oncogene >Regulation of APC|[sol]|CCdc20 activity by RASSF1A|[ndash]|APC|[sol]|CCdc20 circuitry
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Regulation of APC|[sol]|CCdc20 activity by RASSF1A|[ndash]|APC|[sol]|CCdc20 circuitry

机译:RASSF1A | ndash | APC | [sol] | CCdc20电路对APC | [sol] | CCdc20活性的调节

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摘要

RASSF1A is a key tumor-suppressor gene that is often inactivated in a wide variety of solid tumors. Studies have illustrated that RASSF1A plays vital roles in the regulation of cell-cycle progression and functions as a guardian of mitosis. Nevertheless, the precise mechanism of RASSF1A-dependent regulation of mitosis remains largely unclear. APC/CCdc20 is the master switch and regulator of mitosis. The activity of APC/CCdc20 is tightly controlled by phosphorylation and specific inhibitors to ensure the sequential ubiquitination of downstream targets. Here, we report on the novel finding of a regulated circuitry that controls the timely expression and hence activity of APC/CCdc20 during mitosis. Our study showed that RASSF1A and APC/CCdc20 form a molecular relay that regulates the APC/CCdc20 activity at early mitosis. We found that RASSF1A inhibits APC/CCdc20 function through its D-box motifs. Paradoxically, RASSF1A was also demonstrated to be ubiquitinated by APC/CCdc20 in vitro and degraded at prometaphase despite of active spindle checkpoint presence. The first two unique D-boxes at the N-terminal of RASSF1A served as specific degron recognized by APC/CCdc20. Importantly, we found that Aurora A and Aurora B directly phosphorylate RASSF1A, a critical step by which RASSF1A switches from being an inhibitor to a substrate of APC/CCdc20 during the course of mitotic progression. As a result of RASSF1A degradation, APC/CCdc20 can then partially activate the ubiquitination of Cyclin A in the presence of spindle checkpoint. This circuitry is essential for the timely degradation of Cyclin A. To conclude, our results propose a new model for RASSF1A–APC/CCdc20 interaction in ensuring the sequential progression of mitosis.
机译:RASSF1A是一个关键的肿瘤抑制基因,经常在多种实体瘤中失活。研究表明,RASSF1A在调节细胞周期进程中起着至关重要的作用,并作为有丝分裂的守护者。尽管如此,RASSF1A依赖的有丝分裂调节的确切机制仍不清楚。 APC / CCdc20是有丝分裂的主开关和调节器。 APC / CCdc20的活性受到磷酸化和特异性抑制剂的严格控制,以确保下游靶标的顺序泛素化。在这里,我们报告控制电路的及时发现,从而控制APC / CCdc20在有丝分裂期间的活动的新颖发现。我们的研究表明,RASSF1A和APC / CCdc20形成了一个分子继电器,可调节有丝分裂早期的APC / CCdc20活性。我们发现,RASSF1A通过其D-box基序抑制APC / CCdc20功能。矛盾的是,RASSF1A在体外也被APC / CCdc20泛素化,并在前中期降解,尽管存在活跃的纺锤体检查点。 RASSF1A N末端的前两个独特D-boxs被APC / CCdc20识别为特定的德良子。重要的是,我们发现Aurora A和Aurora B直接磷酸化RASSF1A,这是在有丝分裂过程中RASSF1A从抑制剂转变为APC / CCdc20底物的关键步骤。由于RASSF1A降解,APC / CCdc20然后可以在存在主轴检查点的情况下部分激活细胞周期蛋白A的泛素化。该电路对于及时降解细胞周期蛋白A是必不可少的。总而言之,我们的结果提出了RASSF1A-APC / CCdc20相互作用的新模型,以确保有丝分裂的顺序发展。

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