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A protein encoded by a new family of mobile elements from Euryarchaea exhibits three domains with novel folds

机译:由Euryarchaea的一个新的移动元件家族编码的蛋白质具有三个具有新折叠的域

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摘要

We present here the 2.6Å resolution crystal structure of the pT26-6p protein, which is encoded by an ORF of the plasmid pT26-2, recently isolated from the hyperthermophilic archaeon, Thermococcus sp. 26,2. This large protein is present in all members of a new family of mobile elements that, beside pT26-2 include several virus-like elements integrated in the genomes of several Thermococcales and Methanococcales (phylum Euryarchaeota). Phylogenetic analysis suggested that this protein, together with its nearest neighbor (organized as an operon) have coevolved for a long time with the cellular hosts of the encoding mobile element. As the sequences of the N and C-terminal regions suggested a possible membrane association, a deletion construct (739 amino acids) was used for structural analysis. The structure consists of two very similar β-sheet domains with a new topology and a five helical bundle C-terminal domain. Each of these domains corresponds to a unique fold that has presently not been found in cellular proteins. This result supports the idea that proteins encoded by plasmid and viruses that have no cellular homologues could be a reservoir of new folds for structural genomic studies.
机译:我们在此介绍了pT26-6p蛋白的2.6Å分辨率晶体结构,该结构由最近从超嗜热古生菌Thermococcus sp。分离的质粒pT26-2的ORF编码。 26,2。这种大蛋白存在于一个新的移动元件家族的所有成员中,除了pT26-2之外,该家族还包括整合在数种嗜热球菌和甲烷球菌(Euryarchaeota)基因组中的几种病毒样元件。系统发育分析表明,这种蛋白质及其最邻近的蛋白质(组织为操纵子)与编码移动元件的细胞宿主共同进化了很长时间。由于N和C端区域的序列表明可能存在膜结合,因此使用缺失构建体(739个氨基酸)进行结构分析。该结构由两个非常相似的具有新拓扑结构的β-折叠结构域和五个螺旋束C末端结构域组成。这些结构域的每一个对应于目前在细胞蛋白中尚未发现的独特折叠。该结果支持这样的想法,即由质粒编码的蛋白质和没有细胞同源物的病毒可能是结构基因组学研究的新折叠。

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