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BTG2 bridges PABPC1 RNA-binding domains and CAF1 deadenylase to control cell proliferation

机译:BTG2桥接PABPC1 RNA结合域和CAF1腺苷酸酶以控制细胞增殖

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While BTG2 plays an important role in cellular differentiation and cancer, its precise molecular function remains unclear. BTG2 interacts with CAF1 deadenylase through its APRO domain, a defining feature of BTG/Tob factors. Our previous experiments revealed that expression of BTG2 promoted mRNA poly(A) tail shortening through an undefined mechanism. Here we report that the APRO domain of BTG2 interacts directly with the first RRM domain of the poly(A)-binding protein PABPC1. Moreover, PABPC1 RRM and BTG2 APRO domains are sufficient to stimulate CAF1 deadenylase activity in vitro in the absence of other CCR4–NOT complex subunits. Our results unravel thus the mechanism by which BTG2 stimulates mRNA deadenylation, demonstrating its direct role in poly(A) tail length control. Importantly, we also show that the interaction of BTG2 with the first RRM domain of PABPC1 is required for BTG2 to control cell proliferation.
机译:尽管BTG2在细胞分化和癌症中起着重要作用,但其确切的分子功能仍不清楚。 BTG2通过其APRO域与CAF1腺苷酸酶相互作用,这是BTG / Tob因子的定义特征。我们以前的实验表明,BTG2的表达通过不确定的机制促进了mRNA poly(A)尾部缩短。在这里我们报告BTG2的APRO域直接与poly(A)结合蛋白PABPC1的第一个RRM域相互作用。此外,在没有其他CCR4-NOT复合亚基的情况下,PABPC1 RRM和BTG2 APRO结构域足以在体外刺激CAF1腺苷酸酶活性。因此,我们的研究结果揭示了BTG2刺激mRNA腺苷酸化的机制,证明了其在poly(A)尾巴长度控制中的直接作用。重要的是,我们还显示BTG2与PABPC1的第一个RRM域的相互作用是BTG2控制细胞增殖所必需的。

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