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NOT10 and C2orf29/NOT11 form a conserved module of the CCR4-NOT complex that docks onto the NOT1 N-terminal domain

机译:NOT10和C2orf29 / NOT11构成CCR4-NOT复合物的保守模块该模块对接在NOT1 N末端域上

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摘要

The CCR4-NOT complex plays a crucial role in post-transcriptional mRNA regulation in eukaryotes. This complex catalyzes the removal of mRNA poly(A) tails, thereby repressing translation and committing an mRNA to degradation. The conserved core of the complex is assembled by the interaction of at least two modules: the NOT module, which minimally consists of NOT1, NOT2 and NOT3, and a catalytic module comprising two deadenylases, CCR4 and POP2/CAF1. Additional complex subunits include CAF40 and two newly identified human subunits, NOT10 and C2orf29. The role of the NOT10 and C2orf29 subunits and how they are integrated into the complex are unknown. Here, we show that the Drosophila melanogaster NOT10 and C2orf29 orthologs form a complex that interacts with the N-terminal domain of NOT1 through C2orf29. These interactions are conserved in human cells, indicating that NOT10 and C2orf29 define a conserved module of the CCR4-NOT complex. We further investigated the assembly of the D. melanogaster CCR4-NOT complex, and demonstrate that the conserved armadillo repeat domain of CAF40 interacts with a region of NOT1, comprising a domain of unknown function, DUF3819. Using tethering assays, we show that each subunit of the CCR4-NOT complex causes translational repression of an unadenylated mRNA reporter and deadenylation and degradation of a polyadenylated reporter. Therefore, the recruitment of a single subunit of the complex to an mRNA target induces the assembly of the complete CCR4-NOT complex, resulting in a similar regulatory outcome.
机译:CCR4-NOT复合体在真核生物转录后mRNA调控中起着至关重要的作用。该复合物催化去除mRNA poly(A)尾巴,从而抑制翻译并使mRNA降解。该复合物的保守核是通过至少两个模块的相互作用组装而成的:NOT模块(最少由NOT1,NOT2和NOT3组成),以及一个催化模块,包含两个腺苷酸酶CCR4和POP2 / CAF1。其他复杂的亚基包括CAF40和两个新发现的人类亚基NOT10和C2orf29。 NOT10和C2orf29亚基的作用以及如何将其整合到复合物中尚不清楚。在这里,我们显示果蝇NOT10和C2orf29直系同源物形成一个复合物,该复合物通过C2orf29与NOT1的N末端域相互作用。这些相互作用在人细胞中是保守的,表明NOT10和C2orf29定义了CCR4-NOT复合物的保守模块。我们进一步研究了D. melanogaster CCR4-NOT复合物的装配,并证明了CAF40的保守犰狳重复结构域与NOT1区域相互作用,其中包括功能未知的结构域DUF3819。使用系留测定,我们显示CCR4-NOT复杂的每个亚基会导致未腺苷酸化的mRNA报道分子的翻译阻抑和腺苷酸化和多腺苷酸化的报道基因的降解。因此,将复合物的单个亚基募集至mRNA靶标诱导了完整CCR4-NOT复合物的组装,从而导致类似的调节结果。

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