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首页> 外文期刊>BioEssays : >Beyond the known functions of the CCR4-NOT complex in gene expression regulatory mechanisms New structural insights to unravel CCR4-NOT mRNA processing machinery
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Beyond the known functions of the CCR4-NOT complex in gene expression regulatory mechanisms New structural insights to unravel CCR4-NOT mRNA processing machinery

机译:CCR4-NOT复合物在基因表达调控机制中的已知功能之外,进一步揭示了CCR4-NOT mRNA处理机器的结构新见解

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摘要

Large protein assemblies are usually the effectors of major cellular processes. The intricate cell homeostasis network is divided into numerous interconnected pathways, each controlled by a set of protein machines. One of these master regulators is the CCR4-NOT complex, which ultimately controls protein expression levels. This multi-subunit complex assembles around a scaffold platform, which enables a wide variety of well-studied functions from mRNA synthesis to transcript decay, as well as other tasks still being identified. Solving the structure of the entire CCR4-NOT complex will help to define the distribution of its functions. The recently published three-dimensional reconstruction of the complex, in combination with the known crystal structures of some of the components, has begun to address this. Methodological improvements in structural biology, especially in cryoelectron microscopy, encourage further structural and protein-protein interaction studies, which will advance our comprehension of the gene expression machinery.
机译:大蛋白装配体通常是主要细胞过程的效应子。复杂的细胞动态平衡网络分为许多相互连接的途径,每条途径均由一组蛋白质机器控制。这些主调节剂之一是CCR4-NOT复合物,它最终控制蛋白质表达水平。这种多亚基复合体在支架平台周围组装,这使从mRNA合成到转录本衰变,以及尚待确定的其他任务的各种功能得到了充分研究。解决整个CCR4-NOT复合物的结构将有助于定义其功能的分布。最近公布的配合物的三维重建,结合某些组分的已知晶体结构,已开始解决这一问题。结构生物学,特别是冷冻电子显微镜的方法学改进,鼓励了进一步的结构和蛋白质-蛋白质相互作用研究,这将促进我们对基因表达机制的理解。

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