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An efficient on-column expressed protein ligation strategy: Application to segmental triple labeling of human apolipoprotein E3

机译:一种有效的柱上表达蛋白连接策略:应用于人类载脂蛋白E3的片段三重标记

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摘要

Expressed protein ligation (EPL) is an intein-based approach that has been used for protein engineering and biophysical studies of protein structures. One major problem of the EPL is the low yield of final ligation product, primarily due to the complex procedure of the EPL, preventing EPL from gaining popularity in the research community. Here we report an efficient on-column EPL strategy, which focuses on enhancing the expression level of the intein-fusion protein that generates thioester for the EPL. We applied this EPL strategy to human apolipoprotein E (apoE) and routinely obtained 25–30 mg segmental, triple-labeled apoE from 1-L cell culture. The approaches reported here are general approaches that are not specific for apoE, thus providing a general strategy for a highly efficient EPL. In addition, we also report an isotopic labeling scheme that double-labels one domain and keeps the other domain of apoE deuterated. Such an isotopic labeling scheme can only be achieved using the EPL strategy. Our data indicated that the segmental triple-labeled apoEs using this labeling scheme produced high-quality, simplified NMR spectra, facilitating NMR spectral assignment. For large proteins, such as apoE, perdeuterated protein samples have to be used to reduce the linewidth of NMR signals, causing a major problem for the NOE-based NMR method, since perdeuterated proteins lack protons for NOE measurement. The new labeling strategy solves this problem and provides 13C/15N double-labeled, protonated protein domains, allowing for determination of high-resolution NMR structure of these large proteins.
机译:表达的蛋白质连接(EPL)是一种基于蛋白的方法,已用于蛋白质工程和蛋白质结构的生物物理研究。 EPL的一个主要问题是最终连接产物的收率低,这主要是由于EPL的程序复杂,导致EPL在研究界不受欢迎。在这里,我们报告了一种高效的柱上EPL策略,其重点是提高为EPL生成硫酯的内含蛋白融合蛋白的表达水平。我们将此EPL策略应用于人载脂蛋白E(apoE),并从1-L细胞培养物中常规获得25–30 mg分段,三重标记的apoE。这里报告的方法是非特定于apoE的通用方法,因此提供了高效EPL的通用策略。此外,我们还报告了一种同位素标记方案,该方案双标记一个域,并使apoE的另一个域保持氘代。这种同位素标记方案只能使用EPL策略来实现。我们的数据表明,使用这种标记方案的节段性三重标记apoEs产生了高质量的简化NMR光谱,有助于NMR光谱分配。对于诸如apoE的大蛋白,必须使用全氘化蛋白质样品以减少NMR信号的线宽,这对基于NOE的NMR方法造成重大问题,因为全氘化蛋白质缺少用于NOE测量的质子。新的标记策略解决了这个问题,并提供了13C / 15N双重标记的质子化蛋白结构域,从而可以确定这些大蛋白的高分辨率NMR结构。

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