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人源脱帽酶DcpS在无配体和结合m7GDP形式下的晶体结构揭示了清除剂mRNA脱帽的动态机制。

Crystal structures of human DcpS in ligand-free and m7GDP-bound forms suggest a dynamic mechanism for scavenger mRNA decapping.

作者信息

Chen Nan, Walsh Martin A, Liu Yuying, Parker Roy, Song Haiwei

机构信息

Laboratory of Macromolecular Structure, Institute of Molecular and Cell Biology, 61 Biopolis Drive, Proteos, Singapore 138673.

出版信息

J Mol Biol. 2005 Apr 8;347(4):707-18. doi: 10.1016/j.jmb.2005.01.062.

Abstract

Eukaryotic cells utilize DcpS, a scavenger decapping enzyme, to degrade the residual cap structure following 3'-5' mRNA decay, thereby preventing the premature decapping of the capped long mRNA and misincorporation of methylated nucleotides in nucleic acids. We report the structures of DcpS in ligand-free form and in a complex with m7GDP. apo-DcpS is a symmetric dimer, strikingly different from the asymmetric dimer observed in the structures of DcpS with bound cap analogues. In contrast, and similar to the m7GpppG-DcpS complex, DcpS with bound m7GDP is an asymmetric dimer in which the closed state appears to be the substrate-bound complex, whereas the open state mimics the product-bound complex. Comparisons of these structures revealed conformational changes of both the N-terminal swapped-dimeric domain and the cap-binding pocket upon cap binding. Moreover, Tyr273 in the cap-binding pocket displays remarkable conformational changes upon cap binding. Mutagenesis and biochemical analysis suggest that Tyr273 seems to play an important role in cap binding and product release. Examination of the crystallographic B-factors indicates that the N-terminal domain in apo-DcpS is inherently flexible, and in a dynamic state ready for substrate binding and product release.

摘要

真核细胞利用一种清除去帽酶DcpS,在3'-5' mRNA衰变后降解残留的帽结构,从而防止带帽长mRNA的过早去帽以及甲基化核苷酸在核酸中的错误掺入。我们报道了无配体形式以及与m7GDP形成复合物的DcpS的结构。无配体的DcpS是一个对称二聚体,与结合帽类似物的DcpS结构中观察到的不对称二聚体显著不同。相比之下,与m7GpppG-DcpS复合物类似,结合m7GDP的DcpS是一个不对称二聚体,其中封闭状态似乎是底物结合复合物,而开放状态模拟产物结合复合物。这些结构的比较揭示了帽结合时N端交换二聚体结构域和帽结合口袋的构象变化。此外,帽结合口袋中的Tyr273在帽结合时显示出显著的构象变化。诱变和生化分析表明,Tyr273似乎在帽结合和产物释放中起重要作用。对晶体学B因子的检查表明,无配体DcpS中的N端结构域本质上是灵活的,处于动态状态,随时准备进行底物结合和产物释放。

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