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首页> 外文期刊>Canadian Journal of Chemistry >Resonance assignments and secondary structure analysis of dynein Sight chain 3 by magic-angle spinning NMR spectroscopy
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Resonance assignments and secondary structure analysis of dynein Sight chain 3 by magic-angle spinning NMR spectroscopy

机译:达因视力链3的共振分配和二级结构的魔角旋转NMR光谱分析

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Dynein light chain LC8 is the smallest subunit of the dynein motor complex and has been shown to play important roles in both dynein-dependent and dynein-independent physiological functions via its interaction with a number of its binding partners. It has also been linked to pathogenesis including roles in viral infections and tumorigenesis. Structural information for LC8-target proteins is critical to understanding the underlying function of LC8 in these complexes. However, some LC8-target interactions are not amenable to structural characterization by conventional structural biology techniques owing to their large size, low solubility, and crystallization difficulties. Here, we report magic-angle spinning (MAS) NMR studies of the homodimeric apo-LC8 protein as a first effort in addressing more complex, multi-partner, LC8-based protein assemblies. We have established site-specific backbone and side-chain resonance assignments for the majority of the residues of LC8, and show TALOS+-predicted torsion angles φ and ψ in close agreement with most residues in the published LC8 crystal structure. Data obtained through these studies will provide the first step toward using MAS NMR to examine the LC8 structure, which will eventually be used to investigate protein-protein interactions in larger systems that cannot be determined by conventional structural studies.
机译:动力蛋白轻链LC8是动力蛋白复合物中最小的亚基,通过与许多结合配偶体相互作用,它在动力蛋白依赖性和动力蛋白依赖性生理功能中均发挥着重要作用。它还与发病机理有关,包括在病毒感染和肿瘤发生中的作用。 LC8靶蛋白的结构信息对于了解这些复合物中LC8的基本功能至关重要。然而,由于它们的大尺寸,低溶解度和结晶困难,一些LC8-靶标相互作用不适合通过常规结构生物学技术进行结构表征。在这里,我们报道了同二聚apo-LC8蛋白质的魔角旋转(MAS)NMR研究,这是解决更复杂,多伙伴,基于LC8的蛋白质组装的首次尝试。我们已经为LC8的大多数残基建立了特定于位点的骨架和侧链共振分配,并显示了TALOS +预测的扭转角φ和ψ与已发布的LC8晶体结构中的大多数残基紧密一致。通过这些研究获得的数据将为使用MAS NMR检测LC8结构提供第一步,该结构最终将用于研究常规系统无法确定的较大系统中的蛋白质-蛋白质相互作用。

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