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首页> 外文期刊>Journal of Molecular Biology >A structural model for the DEAD box helicase YxiN in solution: localization of the RNA binding domain.
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A structural model for the DEAD box helicase YxiN in solution: localization of the RNA binding domain.

机译:DEAD盒解旋酶YxiN在溶液中的结构模型:RNA结合域的定位。

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摘要

DEAD box proteins consist of a common helicase core formed by two globular RecA domains that are separated by a cleft. The helicase core acts as a nucleotide-dependent switch that alternates between open and closed conformations during the catalytic cycle of duplex separation, thereby providing basic helicase activity. Flanking domains can direct the helicase core to a specific RNA substrate by mediating high-affinity or high-specificity RNA binding. In addition, they may position RNA for the helicase core or may directly contribute to unwinding. While structures of different helicase cores have been determined previously, little is known about the orientation of flanking domains relative to the helicase core. YxiN is a DEAD box protein that consists of a helicase core and a C-terminal RNA binding domain (RBD) that mediates specific binding to hairpin 92 in 23S rRNA. To provide a framework for understanding the functional cooperation of the YxiN helicase core and the RBD, we mapped the orientation of the RBD in single-molecule fluorescence resonance energy transfer experiments. We present a model for the global conformation of YxiN in which the RBD lies above a slightly concave patch that is formed by flexible loops on the surface of the C-terminal RecA domain. The orientation of the RBD is different from the orientations of flanking domains in the Thermus thermophilus DEAD box protein Hera and in Saccharomyces cerevisiae Mss116p, in line with the different functions of these DEAD box proteins and of their RBDs. Interestingly, the corresponding patch on the C-terminal RecA domain that is covered by the YxiN RBD is also part of the interface between the translation factors eIF4A and eIF4G. Possibly, this region constitutes an adaptable interface that generally allows for the interaction of the helicase core with additional domains or interacting factors.
机译:DEAD盒蛋白由一个共同的解旋酶核心组成,该核心由两个由裂口分开的球形RecA域组成。解旋酶核心充当核苷酸依赖性开关,其在双链体分离的催化循环期间在开放和闭合构象之间交替,从而提供基本的解旋酶活性。侧翼结构域可通过介导高亲和力或高特异性RNA结合,将解旋酶核心导向特定的RNA底物。此外,它们可能将RNA定位在解旋酶核心上,或可能直接导致解链。尽管先前已经确定了不同解旋酶核心的结构,但是关于侧链结构域相对于解旋酶核心的方向了解甚少。 YxiN是一种DEAD盒蛋白,由解旋酶核心和介导23S rRNA中发夹92的特异性结合的C端RNA结合域(RBD)组成。为了提供理解YxiN解旋酶核心和RBD功能合作的框架,我们在单分子荧光共振能量转移实验中绘制了RBD的方向。我们为YxiN的全球构象提出了一个模型,其中RBD位于C端RecA域表面上的柔性环形成的略微凹入的斑块上方。 RBD的方向与嗜热栖热菌DEAD框蛋白Hera和酿酒酵母Mss116p中侧翼结构域的方向不同,这与这些DEAD框蛋白及其RBD的不同功能一致。有趣的是,由YxiN RBD覆盖的C端RecA域上的相应补丁也是翻译因子eIF4A和eIF4G之间接口的一部分。可能地,该区域构成适应性界面,其通常允许解旋酶核心与其他结构域或相互作用因子相互作用。

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