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An Hfq-like protein in archaea: Crystal structure and functional characterization of the Sm protein from Methanococcus jannaschii

机译:一种古细菌中的类似Hfq的蛋白:詹氏甲烷球菌的Sm蛋白的晶体结构和功能表征

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摘要

The Sm and Sm-like proteins are conserved in all three domains of life and have emerged as important players in many different RNA-processing reactions. Their proposed role is to mediate RNA–RNA and/or RNA–protein interactions. In marked contrast to eukaryotes, bacteria appear to contain only one distinct Sm-like protein belonging to the Hfq family of proteins. Similarly, there are generally only one or two subtypes of Sm-related proteins in archaea, but at least one archaeon, Methanococcus jannaschii, encodes a protein that is related to Hfq. This archaeon does not contain any gene encoding a conventional archaeal Sm-type protein, suggesting that Hfq proteins and archaeal Sm-homologs can complement each other functionally. Here, we report the functional characterization of M. jannaschii Hfq and its crystal structure at 2.5 Å resolution. The protein forms a hexameric ring. The monomer fold, as well as the overall structure of the complex is similar to that found for the bacterial Hfq proteins. However, clear differences are seen in the charge distribution on the distal face of the ring, which is unusually negative in M. jannaschii Hfq. Moreover, owing to a very short N-terminal α-helix, the overall diameter of the archaeal Hfq hexamer is significantly smaller than its bacterial counterparts. Functional analysis reveals that Escherichia coli and M. jannaschii Hfqs display very similar biochemical and biological properties. It thus appears that the archaeal and bacterial Hfq proteins are largely functionally interchangeable.
机译:Sm和Sm样蛋白在生命的所有三个域中都是保守的,并且已在许多不同的RNA加工反应中扮演重要角色。他们提出的作用是介导RNA-RNA和/或RNA-蛋白质的相互作用。与真核生物形成鲜明对比的是,细菌似乎只含有一种属于Hfq蛋白质家族的独特Sm样蛋白质。同样,古细菌中通常只有一种或两种亚型的Sm相关蛋白,但是至少一种古细菌,詹氏甲烷球菌(Methanococcus jannaschii)编码一种与Hfq相关的蛋白。该古细菌不包含任何编码常规古细菌Sm型蛋白的基因,这表明Hfq蛋白和古细菌Sm-同源物可以在功能上互补。在这里,我们报告了M. jannaschii Hfq的功能表征及其在2.5Å分辨率下的晶体结构。该蛋白质形成六聚环。单体的折叠以及复合物的整体结构与细菌Hfq蛋白相似。但是,在环远端表面的电荷分布中可以看到明显的差异,这在詹氏甲烷球菌Hfq中异常为负。此外,由于非常短的N端α螺旋,古细菌Hfq六聚体的总直径明显小于其细菌对应物。功能分析表明,大肠杆菌和詹氏甲烷球菌Hfqs显示出非常相似的生化和生物学特性。因此,似乎古细菌和细菌Hfq蛋白在功能上可以互换。

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