Suppr超能文献

独特的动态模式使混杂的非典型RNA识别基序能够结合不同的配体。

Distinct Dynamic Modes Enable the Engagement of Dissimilar Ligands in a Promiscuous Atypical RNA Recognition Motif.

作者信息

Brown Kerene A, Sharifi Samel, Hussain Rawaa, Donaldson Logan, Bayfield Mark A, Wilson Derek J

机构信息

Department of Chemistry, York University , Toronto, ON M3J 1P3, Canada.

Centre for Research in Mass Spectrometry, York University , Toronto, ON M3J 1P3, Canada.

出版信息

Biochemistry. 2016 Dec 27;55(51):7141-7150. doi: 10.1021/acs.biochem.6b00995. Epub 2016 Dec 13.

Abstract

Conformational dynamics play a critical role in ligand binding, often conferring divergent activities and specificities even in species with highly similar ground-state structures. Here, we employ time-resolved electrospray ionization hydrogen-deuterium exchange (TRESI-HDX) to characterize the changes in dynamics that accompany oligonucleotide binding in the atypical RNA recognition motif (RRM2) in the C-terminal domain (CTD) of human La protein. Using this approach, which is uniquely capable of probing changes in the structure and dynamics of weakly ordered regions of proteins, we reveal that binding of RRM2 to a model 23-mer single-stranded RNA and binding of RRM2 to structured IRES domain IV of the hepatitis C viral (HCV) RNA are driven by fundamentally different dynamic processes. In particular, binding of the single-stranded RNA induces helical "unwinding" in a region of the CTD previously hypothesized to play an important role in La and La-related protein-associated RNA remodeling, while the same region becomes less dynamic upon engagement with the double-stranded HCV RNA. Binding of double-stranded RNA also involves less penetration into the RRM2 binding pocket and more engagement with the unstructured C-terminus of the La CTD. The complementarity between TRESI-HDX and Δδ nuclear magnetic resonance measurements for ligand binding analysis is also explored.

摘要

构象动力学在配体结合中起着关键作用,即使在具有高度相似基态结构的物种中,也常常赋予不同的活性和特异性。在这里,我们采用时间分辨电喷雾电离氢氘交换(TRESI-HDX)来表征人La蛋白C端结构域(CTD)中非典型RNA识别基序(RRM2)中寡核苷酸结合时伴随的动力学变化。使用这种独特的能够探测蛋白质弱有序区域结构和动力学变化的方法,我们发现RRM2与模型23聚体单链RNA的结合以及RRM2与丙型肝炎病毒(HCV)RNA的结构化内部核糖体进入位点(IRES)结构域IV的结合是由根本不同的动力学过程驱动的。特别是,单链RNA的结合在CTD的一个区域诱导螺旋“解旋”,该区域先前被假设在La和La相关蛋白相关的RNA重塑中起重要作用,而与双链HCV RNA结合时,同一区域的动力学变得更小。双链RNA的结合还涉及较少地穿透到RRM2结合口袋中,以及更多地与La CTD的无结构C末端结合。我们还探讨了TRESI-HDX和Δδ核磁共振测量在配体结合分析中的互补性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验