首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >Structure of the SPRY domain of the human RNA helicase DDX1, a putative interaction platform within a DEAD-box protein
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Structure of the SPRY domain of the human RNA helicase DDX1, a putative interaction platform within a DEAD-box protein

机译:人RNA HelicaseDDX1的SPry结构域的结构,死箱蛋白内的推定相互作用平台

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The human RNA helicase DDX1 in the DEAD-box family plays an important role in RNA processing and has been associated with HIV-1 replication and tumour progression. Whereas previously described DEAD-box proteins have a structurally conserved core, DDX1 shows a unique structural feature: a large SPRY-domain insertion in its RecA-like consensus fold. SPRY domains are known to function as protein-protein interaction platforms. Here, the crystal structure of the SPRY domain of human DDX1 (hDSPRY) is reported at 2.0 angstrom resolution. The structure reveals two layers of concave, antiparallel beta-sheets that stack onto each other and a third beta-sheet beneath the beta-sandwich. A comparison with SPRY-domain structures from other eukaryotic proteins showed that the general beta-sandwich fold is conserved; however, differences were detected in the loop regions, which were identified in other SPRY domains to be essential for interaction with cognate partners. In contrast, in hDSPRY these loop regions are not strictly conserved across species. Interestingly, though, a conserved patch of positive surface charge is found that may replace the connecting loops as a protein-protein interaction surface. The data presented here comprise the first structural information on DDX1 and provide insights into the unique domain architecture of this DEAD-box protein. By providing the structure of a putative interaction domain of DDX1, this work will serve as a basis for further studies of the interaction network within the hetero-oligomeric complexes of DDX1 and of its recruitment to the HIV-1 Rev protein as a viral replication factor.
机译:死箱家族中的人RNA螺旋酶DDX1在RNA加工中起重要作用,并与HIV-1复制和肿瘤进展相关。然而,先前描述的死箱蛋白质具有结构保守的核心,DDX1显示了独特的结构特征:在其Reca样共识折叠中的大型域域插入。已知SPRY结构域用作蛋白质 - 蛋白质相互作用平台。这里,以2.0埃分辨率报告人DDX1(HDSPRY)的SPRY结构域的晶体结构。该结构揭示了两层凹入的反向β-薄片,其堆叠在β-三明治下方的彼此和第三β-薄片上。与其他真核蛋白质的SPRY域结构的比较表明,一般β-夹心折叠被保守;然而,在环形区域中检测到差异,其在其他SPry结构域中鉴定为必不可少的与同源伴侣相互作用。相比之下,在HDSPRY中,这些循环区域跨物种严格保守。然而,有趣的是,发现存在阳性表面电荷的保守贴片,其可以代替连接环作为蛋白质 - 蛋白质相互作用表面。这里呈现的数据包括关于DDX1的第一结构信息,并提供进入该死箱蛋白的独特域架构的见解。通过提供DDX1的推定相互作用域的结构,该作品将作为进一步研究DDX1的异源性低聚复合物内的相互作用网络的基础,并将其募集到HIV-1转蛋白作为病毒复制因子。

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